Document K64ajKD2raOND0JdDbqNk01b6
FILE NAME Household Contact HC
DATE 1952 DOC HC009
DOCUMENT DESCRIPTION Dept of Labor Report - Safety and Health Standards
SAFETY AND HEALTH
|
STANDARDS
Loa
For Contractors
performing Federal Supply
Contracts under the
Healey Public Contracts Act
Rael
a
4
po
UNITED STATES DEPARTMENT OF LABOR
MAURICE J. TOBIN Secretary
Wage and Ilour and Public Contracts . Divisions
WM R. McCOMB Administrator
WASHINGTON D. C.
UNITED STATES GOVERNMENT PRINTING OFFICE
WASHINGTON 1952
FOREWORD
gamma
y
eae
Spe L
The Healey Public Contracts Act requires that contracts entered into by any agency of the United States Government for the manufacture or furnishing of materials supplies articles and equipment in any amount exceeding 10,000 must contain among other provisions a stipulation that No part of such contract will be performed nor will any of the materials supplies articles or equipment to be manufactured
or furnished under said contract be manufactured or fabricated in any plants factories
buildings or surroundings or under working conditions which are insanitary or hazardous or dangerous to the health and safety of employees engaged in the perform-
ance of the contract * * "
This booklet contains three parts Part I sets out the principal factors which have
induced managements to install systematic safety programs and lists the basic day
day accident prevention practices employed ; parts II and III set out the minimum safety and health standards respectively which will be applied by the Secretary of Labor and
the Administrator of the Wage and Hour and Public Contracts Divisions in determining
whether in specific cases Government contracts are being performed under safe and
sanitary conditions as required by section 1 e of the act These standards are based
to a large extent on standards approved by the American Standards Association and
safety and health codes adopted by a number of States and generally represent what
;
:
have been shown by industrial experience to be reasonable minimum standards for
safety and health
Changing industrial processes and materials may introduce new safety and health
i
hazards which require constant attention if a realistic preventive program is to be car-
i
;
ried on Space limitations of this bulletin permit compilation only of those standards
relating to safety and occupational health problems which are commonly met by employ-
ers and preclude inclusion of materials relating to uncommon hazards or situations The measures to be taken to meet uncommon hazards should be reasonable in the light of the
circumstances Further these standards are not in any way intended to limit or super-
sede State or local safety and occupational health codes and where such codes provide
stricter or more exact standards compliance with such higher standards will be deemed
compliance with the Public Contracts Act
Some of the types of work discussed in this bulletin involve hazardous occupations for which higher minimum ages are provided under State child labor laws or the child labor provisions of the Fair Labor Standards Act than under the Healey Public Contracts Act The higher age limits prescribed for such hazardous occupations
under such other laws are not superseded or modified by the safety standards con-
tained in this bulletin
The failure to maintain proper safety and health standards in the performance of
i
contracts subject to the Public Contracts Act constitutes a breach of contract which
;
may provide the basis for cancellation of the contract and makes the party responsible
for such breaches subject to the ineligible list sanctions provided in the act
:
These standards were prepared by the Bureau of Labor Standards in cooperation with the Wage and Hour and Public Contracts Divisions and the Office of the Solicitor and checked for adequacy and suitability for use in the States with representatives of
typical State labor departments Assistance on the sections concerning occupational health requirements was furnished by the Division of Industrial Hygiene of the U. S. Public Health Service We wish to take this opportunity to thank these officials for their
assistance in making this publication possible
PART SAFETY AND HEALTH PROGRAMS PAY DIVIDENDS
Hard cold statistics on industrial accidents
times the direct costs The items of cost that
in the United States tell a tragic and revealing
are likely to be present in each case of acci-
story These figures deal with the number of
dental injury are
people killed and injured in industrial accidents Sometimes figures are used to estimate the
1. Compensation
2. Medical expense
billions of dollars that are lost by management and by workers and their families as a result
of accidents
3. Lost time of injured employee 4. Lost time of fellow employees
work
who
stop
But there are no statistics on the human suf-
a To aid injured worker
fering sorrow and misery which follow deaths
b Out of sympathy or curiosity
UF
and injuries into the homes of American work-
c For other incidental reasons
NAM, ers even though the human tragedy which
stalks after industrial accidents affords the
5. Time of foreman executives or other staff personnel
most impelling reason for intelligent safety
a Assisting injured employee
programs
Although the most important consideration in any safety program is the safety and wellbeing of the worker and the protection of his family from want another driving force behind industrial safety programs is the cost of
accidents in terms of money and human re-
sources tragic economic waste A third reason for undertaking good safety
programs applies primarily to contractors per-
b Investigating cause of accident c Arranging for continuance of injured
employee's work d Selecting training or breaking in
new employee e Preparing accident report f Attending hearings on injury serious
or contested cases 6. Lost production due to upset shock or
diverted interest of workers
forming on certain Government supply contracts of 10,000 or more subject to the safety requirements of the Healey Public Contracts Act Part I represents in briefest form basic information drawn from the day practice of managements whose safety performance deserves grade ranking in terms of the elimination of employee injuries While more information could well have been included this presentation was purposely limited to a few major items for greater emphasis
7. Lost production due to stoppage of machine or process in charge of injured person
8. Damage to machine equipment or material directly occasioned by the accident
9. Spoiled product or material due to emotional upset of fellow workers
10. Lessened effectiveness of injured employee for a period after his return to work
11. Business or good will lost through failure to fill order on time lost bonuses payment of forfeits for nondelivery etc.
A. ACCIDENT COSTS
Accidents are expensive They constitute a serious wastage of our human and material resources Substantial savings of both can be made by preventing accidents They can be pre-
12. Legal expense court fees expense of preparation of case settlements judgments etc. in cases contested at law
13. The employer's share of the loss and expense to society in each case of death or continued loss in earning power
vented by appeals to the emotions and by persistent day effort to enlist on the side
B. MANAGEMENT'S PART IN HEALTH
of safety the present desire and necessity
AND SAFETY
that every management has for reducing waste
Everyone can easily see that accident costs are wholly waste It is not so easy to see how large are these wastes Compensation and medical costs spoken of as direct costs are obvious It has however taken careful studies by experienced cost accountants and industrial executives to show how large are the other costs spoken of as indirect costs It is now clear that on the average the indirect costs of accidents in industry are not less than four
Safety work in industry must begin at the
top Since every kind of work that men do in-
volves some degree of hazard each produces its share of injuries But by the proper attention to safety almost all injuries can be prevented in any kind of work and in any occupation Management's desire to eliminate injuries should be strong enough to make their prevention a vital part of all activities Prevention
must receive continuous attention along with such matters as cost quality and production
Da
ee
Very briefly the more important definite things that the management should do to pre-
vent accidents may be set down as follows
1. Provide safe plant and equipment 2. Safeguard all machinery 3. Place no new machinery or equipment in
practices The committee should meet at least monthly and keep a written record of the number and nature of its recommendations the
incompleted number carried out the number
and the number not acted upon The members of the committee should be selected from the vari-
operation unless full attention has been paid to its safety
ous departments and should be changed at regu-
lar intervals
4. Plan and arrange all processes and opera-
tions with careful attention to safety
The advisable committee set depends chiefly upon the size of the establishment but
5. Maintain a system of inspection to discover
other factors have a bearing such as the prog-
e correctible hazards
ress that has been made in safeguarding the
ee
6. Maintain minded supervision
plant when committee work is started the size
nC
7. Train educate and stimulate its employees and relationship of the various departments or
to follow safe methods of work and take a sin- plant units the type of business manufacture
cere interest in the safety of themselves and
construction transportation public utilities
their fellow workers
etc. However at least the following funda-
RUE 8. Investigate all accidents to determine how
mentals should be met in forming the committee
best to prevent a recurrence
or committees decided upon
NalinOh
9. Make a full report to the proper authori-
Mme
ties of all cases of injury
a Each committee should be so made up
FNP
as to have standing appropriate to
nr
C. THE WORKER'S PART IN HEALTH
ted
Y
AND SAFETY
its field of work For instance a main or governing committee should
TODG
Safety is everybody's business Every em-
include such key executives as mas-
SARA
ployee should of course be always alert to the
ter mechanic and production mana-
al e possibilities of injury Management can do only
ger A workers committee should be
nh
ot
part of the job Each worker should faithfully
made up of members well known to
Oa: cooperate with his management in all safety
and having the respect of their fel-
ADE
programs Some of the ways in which his help
low workmen
"
a
is most necessary are
b The committee membership should
Ne
Sacto 1. Faithfully using all safeguards provided
2. Studying and carefully following safety
NAR
rules and safety instructions
encompass the maximum in knowl-
edge of the methods practices and conditions in the plant undertaking
Aseove!
3. Working earnestly on safety committees
or group represented
we
or other safety activities to which he
c The committee should be as small as is
MEN
assigned
may be
consistent with the above require-
AAD
RCC
4. Seeking always for the safe
of
ments A committee of three func-
ing on each job or activity
way
work-
tions more effectively than one of
TW
5. Watching out always for the safety of his
five The larger the committee the
fellow men
more the debate and the less the
,
6. Reporting all hazardous conditions of
action
which he learns
When a committee is formed certain matters
D. HEALTH AND SAFETY
of policy and procedure should be definitely set
COMMITTEES forth in writing Written instructions should
A safety committee when properly set up and
cover at least
maintained can be an extremely effective tool
for accident prevention The functions of such
a Scope of committee activity
vin)
a committee should include the
b Extent of committee authority
caer for periodic inspections of the planrtesrpeonvsiiebwilaintdy c Procedure as to
rs
approval of inspection reports analysis of
rac
causes of accidents for the purpose of submit-
1 Time and place of meetings
2 Frequency of meetings
ting recommendations to prevent recurrence of
3 Order of business
or
similar accidents instructing new employces
4 Records to be kept
or workers transferred to unaccustomed
5 Attendance requirements
tasks to the hazards of their work and promoting the education
A committee will take its work seriously in
of all employees in safety proportion to management's attitude toward it
A management that sets up a committee to ac-
complish a specific purpose makes it clear that
it wants results and gives effective executive
supervision to its activities will get satisfac-
tory results therefrom Effective committee
conduct of safety work in the absence of executive leadership is possible only when committee members have unusual initiative and determination to advance the cause of safety In such instances they often convert the nonsafetyminded management Sometimes the salesman of safety failing to arouse adequate management interest can accomplish his purpose by getting a safety committee organized and aid it to plan a program that will interest the top management thus at the same time getting safety work started
E. ACCIDENT INVESTIGATION
It is obvious that every case of disabling injury should be carefully investigated to find out how to prevent a recurrence In theory every accident whether it yields an injury or not should be investigated also but this would involve such a heavy volume of work that few
managements would find it practical Good
practice is to investigate all cases of disable-
ment all other happenings involving the probability of serious injury and cases of repeated injury to an individual
The investigations must be made by persons who are intelligent painstaking and keenly minded Usually an accident has more than a single cause A combination of circum-
stances was necessary to bring it about The employer should try to correct every condition or circumstance that might lead to injury He should particularly not be content to stop with finding the human fault or failure that was involved for in almost every case both a mate-
rial and a human fault will be found If the
material fault or lack is corrected the human fault or lack usually fails to produce injury Of course effort should be made to correct the human fault also Usually correction of the material or mechanical fault involves expense so that the constant temptation is to blame the individual at fault and let the matter end there That is not in the best interests of safety and the tendency to take that course must continuously be resisted
F. ACCIDENTS ARE PREVENTABLE
An excellent definition of accident is that
it is an unexpected occurrence that is unplanned for or unforeseen Occasionally human injury is involved and we have an accidental injury which is what we really mean when we
say accident If each bit of work done in in-
dustry could be properly planned and then carried out exactly as planned there would be no unexpected occurrences and therefore no human injuries Numerous establishments large and small in each branch of industry have by planning foresight and care eliminated at least 9 out of every 10 injuries that otherwise would have been suffered by their workers and have profited by so doing
PART REQUIREMENTS
Records of Injury Frequency Rate
Every person who is or shall become a party to a Government contract which is subject to the provisions of the Healey Public Contracts Act and the regulations thereunder or who is performing or shall perform any part of such contract subject to the provisions of such act or regulations shall maintain injury fre-
quency rates as defined herein and such rates
shall be calculated quarterly on a calendar basis commencing the first of January of each year
Such records shall be kept on file for at least three years after the date of entry thereon and shall be made available for inspection by authorized representatives of the Secretary of Labor
Frequency Rate
frequency rates are the primary measures of the incidence of work injuries The lack of comparability inherent in simple injury
totals arising from variations in employment and operating time is overcome by expressing the injuries in terms of a standard unit of exposure By definition the standard comparison frequency rate is the average number of disabling work injuries per million employeehours worked Expressed as a formula it is
Frequency Rate
Number of disabling injuries multiplied by 1,000,000
Total number of employee worked
What Injuries To Count
A disabling work injury is defined as any injury incurred in the course of and arising out of employment which
1 Results in death or 2 Results in any degree of permanent physical impairment regardless of whether or not any time is lost from work or
3 Renders the injured person unable to
work at any regularly established job which is open and available to him throughout the hours of his regular shift on any day after the day of injury including Sundays holidays and days on which the plant is shut down
an injury for statistics purposes is in
no way related to the eligibility of the injured person for workmen's compensation payments In case of doubt as to whether or not an injured person is able to work the attending physician's decision is final
The injuries described in items 1 and 2 of
this definition are commonly spoken of as death cases and permanent disability cases Death cases usually are readily identified Permanent disabilities likewise are usually easy to identify It is necessary however to remember that permanent disabilities include not only all
Establishments participating in the Bureau of Labor Statistics quarterly injury survey and retaining on file copies of each com-
pleted report on Form BLS 1417 or 1417 will be considered as complying with the requirement regarding the maintenance of injury fre-
quency rates
injuries involving the amputation of any part of the body but also all injuries which result in the complete or partial loss of use of any body part or function of the body For example the partial loss of vision or a permanently stiff arm resulting from a poorly healed fracture would
be counted as permanent impairments just as you would count an injury involving the ampu-
For every use the frequency rate affords
the best measure of performance because each
accident might easily but for the grace of God have been very serious or fatal and
therefore the constant effort must be to prevent
every injury not just the more serious ones The following example shows how to figure the frequency rate
tation of a finger or a foot Most permanent disability cases involve the loss of considerable
time Occasionally however there are hardy individuals who experience a minor permanent disability such as the amputation of the end of a finger and return to work on the same day
During 1949 eighteen time injuries occurred in a certain machine shop The number of hours worked during the year totaled
216,000 What was the frequency rate Sub-
stituting these numbers in the frequency rate
formula we get
or the following day Regardless of the fact that no recorded time was lost these cases should be counted if there actually is any residual permanent impairment of any body part or body function
The third category of disabling injuries is
18 x 1,000,000
= =
216,000 which gives a frequency rate of 83 plus That is the men in the shop suffered 83 time
injuries for every million hours they
worked
referred to as temporary disabilities
If the figure for hours is not available
They are temporary disabilities because they
a close enough estimate can usually be made by
do not result in death or any form of perma-
multiplying the average number of workers by
nent impairment In other words they are in-
the hours worked per week and the number of
juries from which the injured person eventually
weeks worked for the period for which the fre-
recovers with no lasting ill effects At the same
quency rate is being calculated
time they are total disabilities because they
Some people prefer to think of the frequency
render the injured person totally unable to
rate in terms of how long a person may expect
est,
work at any regular job for a period of time
to work on the average without getting hurt
BI
equivalent to at least one full shift on any day
If in the above example the shop worked a
a after the day of injury The important things hour week 50 weeks during the year each
to remember in connection with these injuries
man worked 2,000 hours in the year and there-
trae
are 1 Time lost on the day of injury is not
fore in order to put in 216,000 hours there must
considered in determining whether or not an
have been an average of 108 men working The
injury is disabling 2 the inability to work
18 injuries averaged among these 108 men
must continue throughout the hours of the
means that every sixth man was disabled dur-
worker's regular shift on at least one day but
ing the year Another way of putting it is that
3 this inability to work may occur on any
on the average each man could expect to be
day after the injury not necessarily on the next
disabled once in 6 years That is a very high
day and not necessarily on a day on which he
injury rate for even the most hazardous work
would normally be expected to work
Numerous plants in all branches of industry
The reference in the definition to a regularly
maintain frequency rates below 10 and often
established job means that you are not per-
times below 5. A worker in a plant having a
ee
mitted to exclude an injury from the count of
frequency rate of 5 is fortunate indeed for on
disabling injuries if the injured person returns
the average he can expect to work three life-
to a specially created easy job which was de-
times a whole century each disabling
abd signed simply to get him back to work without injury he suffers He is undoubtedly much safer
OE
loss of time
when at work than when not at work
It should also be noted that under the defini-
tion of a disabling injury the reportability of
For full detailed information on deter-
mining
mining frequency rates see American Stan-
|
*
@
dard Method of Compiling Industrial Injury
Rates Z16.1.1
B. BUILDINGS AND EQUIPMENT
1. Buildings and all appurten- . ances thereto including bridges towers balconies runways and platforms should be
structurally safe to prevent collapse 2. Floors No floor or platform should
be so loaded as to have a factor of safety of
less than four That is the weight placed upon a floor or platform should not exceed fourth
of the breaking strength of the platform or
floor
flo r b Floors other than those resting direct-
ly on solid ground when used for storagoer
for operations that might lead to overloading should be clearly posted to show maximum safe
floor loads
c All floor surfaces should be kept clean and dry and maintained in a smooth and rea-
sonably nonslippery condition free from holes
or projections that might cause tripping
d Where the type of operation necessi-
tates working on wet or slippery floor areas
such areas should be protected against slipping
by the use of mats grates cleats or other high
friction floor coverings
e tions
Safe means of access suited to condi-
should be provided to every overhead
point to which employees are called upon to go in connection with their employment Materials
or objects should not remain unnecessarily on the floor surface in such places as will subject
employees to the hazard of falls 3. Floor openings wall openings and ele-
vated platforms openings wall openings and elevated platforms where there is a possibility of persons or material falling through should be provided with standard railing and toe boards or with wood or metal covers Where guard rails are advisable refer to Standards for Railings Toeboards and Guards
as specified under Part II E Machine Guard-
ing
4. Stairways or Steps Riser height
and tread width should be uniform in any given
flight of stairs Variations in riser height
should not exceed 1/8 inch in the stair as con-
structed Variation due to wear should not be
allowed to exceed 1/4 inch Riser height should
not be over 8 inches and tread width exclusive
of nosing not less than 9 inches Preferred
dimensions are riser 7 inches tread 11 inches
plus 1 inch nosing and width not less than 36
inches
b Every stairway or steps of four or more
risers
risers should be equipped with a substantial smooth handrail from 30 inches to 36 inches high measured vertically from the nose of the
Published by American Standards Association 70 E. 45th St. New York City
tread and placed on the hand side as one mounts the stair and on the open side if any If 5 feet or more in width or open on both
sides side the stairs should have a handrail on each
c Interior stairways or steps which are more than 8 feet wide should be divided by cen-
ter rails into widths of not more than 8 feet
nor less than 3 feet 8 inches
d Exterior stairways or steps should have a handrail at each side and if the stairway or steps are more than 88 inches wide one or more intermediate handrails should be provided
e Railings on open sides of stairways or steps should be provided with an intermediate rail at midheight or with vertical members having a maximum spacing of 11 inches
f Every stairway or steps should be maintained in good repair free from protruding bolts screws and nails and unnecessary material dirt and slippery conditions Treads should be renewed when the surface including the nosing shows wear to the extent of 1/4
inch or more
g Stairways should not be used for storage purposes and any equipment should be so
located that its presence or use will not unnecessarily obstruct or interfere with free pas-
sage
h All metal treads should have a surface which will reasonably prevent slipping
5. Elevators Elevator inspection by a recognized elevator inspection service will be acceptable as evidence of satisfactory installation and maintenance Hoistways hatchways
elevator wells and wheel holes should be secure-
ly fenced inclosed or otherwise protected For details see American Standard Safety Code for Elevators Dumbwaiters and Escalators
b Elevator machinery electrical apparatus or system wiring should be properly in-
stalled guarded and inspected 6 Illumination Illumination adequate to
permit all work activities to be carried on safely should be provided and maintained during all work periods Minimum standards for illu-
mination should be in conformance with the
American Standard Recommended Practice
of Industrial Lighting
7. Aisles and passageways Permanent aisles and passageways should be kept clear and in good repair Where due to lack of proper definition such aisles and passageways become hazardous they should be clearly defined by painted lines curbings or other methods of marking
b Where industrial trucks are in custom-
ary use way traffic aisles should be at least 2 feet wider than the widest vehicle Two traffic aisles should be at least 3 feet wider than
twice the width of the widest vehicle
c There should be no obstructions across or in aisles that might cause tripping
8. Ladders Full compliance with the applicable provisions of the American Stan-
such to
sible
equipment
wherever
reasonably
pos-
dard Safety Code for Wood Ladders A14.1
is recommended
b Rung spacing on each fixed ladder should be uniform This includes the space between the top rung and the landing measured vertically from the top rung Rungs of all ladders should be uniformly spaced firmly secured and maintained in a sufficiently condition to prevent turning or other motion Bent rungs of metal fixed ladders should be promptly replaced or repaired Clearance at the back of
rungs of fixed ladders should not be less than
6inches measured horizontally from any ob-
ject
c Fixed ladders should be secured with
sufficient firmness and in such manner that they
will be free from visible motion under normal
conditions of use Hand holds should be pro-
vided at the top of each fixed ladder so arranged that a person using them can conveniently retain a secure hold with either hand
when stepping from the top rung of the ladder to the landing point or the reverse Side rails should extend above landings at least 3 feet No fixed ladder should have a slope outward that is from the vertical toward the climber unless such sloping ladder or sloping part thereof is
Good design eliminates overhead locations to
the maximum practicable extent
2 Nature of Devices that require rather frequent as weekly servicing usually involving only minor attention or adjustment Examples Ring oiler or equivalent bear-
ings fans induction motors storage tanks exhaust
Suggested safeguards and toeboard-
ed platforms reached by stairs should be provided wherever space and location permits Fixed ladders are preferable to stairs steeper than will give a 10 inch rise and 8 inch tread
pitch about 51 Where location prevents stair or fixed ladder provide portable railed step or portable ladder suited to the purpose
with hooks fixed to the rails to engage suitable supports at the platform
3 Nature of Apparatus that requires daily or more frequent servicing Examples Control devices as governors regulators recorders sight glasses etc.
Suggested safeguards such point should be accessible by a platform and stair In some cases they can be serviced from the floor Example Use of telescope to read ther-
mometers on tall apparatus
properly caged Ladders in disrepair should be promptly repaired or removed from use
d In the use of portable straight ladders practicable precautions should be used Every step ladder should be equipped with a spreader of a type that locks when the ladder is opened to hold it securely in the open position Portable steps and saw horses should be of substantial
4 Nature of Equipment that requires relatively infrequent attention but which involves major cleaning or maintenance and repair work Examples Electric overhead
traveling cranes overhauling steam boilers retubing cleaning tubes stills fractionating columns digesters etc.
Suggested safeguards and toe-
Man
construction with parts firmly secured and
boarded platforms reached by stairs wherever
SE maintained in a safe state of repair
possible Particularly in crane overhauls such
SaMETUB 9. Overhead work Every overhead
platforms cut the cost of the work result in
a
job that may have to be done in an establish-
better maintenance and reduce the hazard
ment should be carefully considered and a safe
thus justifying very substantial expenditures
fe
means of doing it provided
for the platform If fixed platforms are not
b Some of the more common overhead
practicable provide substantial knock
jobs with means of safeguarding are given
below
scaffolding railed and toeboarded kept for the purpose In some cases wheeled platforms
1 Nature of Devices that require only infrequent attention normally consisting of only simple servicing or adjustments Examples Valves in steam air or other supply
; lines ; pressure reducers overflow or other high
level storage tanks liquid level indicators
gauges natural draft ventilators
Suggested safeguards -Portable -Portable ladders Feet suited to floor surface ladder of correct length strength and condition conveniently available firm support at top security of position safety in placing ladder safety of man on ladder position clearance from mov-
e intgc.parts electrical conductors steam pipes
Good practice provides fixed ladders or stairs
wheels arranged to lock are convenient 5 Nature of Apparatus out of
doors Assignable to above classes but listed here because of the special hazards due to wind ice cold etc. Example Sprinkler tanks oil storage tanks derricks coal unloaders dust collectors advertising signs flood lights
Suggested safeguards outdoor tanks should be equipped with fixed ladders and self-
draining platforms if needed to give safe access to manholes etc. Means of access to bearings etc. on derricks and coal unloaders
must be suited to conditions Never omit lad-
der rails or allow ladder to have reverse slope provide adequate hand holds and foot supports
6 Nature of Maintenance activities as window cleaning and reglazing paint-
ing replacing lights painting masonry oiling and other work on overhead shafting
Suggested safeguards Window cleaning
equipment should conform to the American Standard Safety Code for Window Cleaning
Long spout oil cans can be used instead of "
ladders The practice of oiling running over-
head machinery is rarely carefully planned
When donc from a crane a railed platform
should be provided and careful precautions
taken to guard against insufficient clearance
Extension fittings should be used to give ade-
quate clearance from moving parts 10. Housekeeping and order
Satis-
factory control requires careful consideration
of such factors as tonnage and volume of mate-
rials to be handled the amounts required at the
successive steps of the process allowance of the
spaces necessary and the methods to be used
in handling and transporting the materials and
articles b Methods of piling should be worked out
for each class of materials or articles Points
commonly of importance are
1 Height of This is dependent up-
on the character of the material and the con-
sequent danger of toppling the means used in piling and removal the traffic nearby and interference with sprinkler operation When the
nature of the material is suitable it should be
so piled as to be interlocking 2 Strength of Allowable floor
loads should be posted
3 Evenness of support and its continued
stability This condition often exists in yard
piling where uneven ground or moisture may cause toppling and on first floors or in base-
ments where floors may slope or flooring sag
4 Location traffic or the presence of work benches or machines may make it
necessary to limit the height of material to be
piled in a safe manner
5 Piling small articles Containers suit-
ed to the nature of the articles are commonly
used These usually take the form of wheeled or truck pick containers that receive the articles from work bench or machine A useful
modification for such articles are small cans or
trays that themselves may be stacked
6 Pipe or other long Suitable racks aid handling Projecting ends should be
protected by location railings or barriers
c Remove or bend over in such a manner
as to make them harmless all projecting nails
in kegs barrels boards or boxes allowed to re-
main about the work place
d Waste disposal provisions should be
made for the orderly collection and disposal of
all scrap debris empty bottles etc special pro-
visions suited to the nature of the substance in
question should be made for the disposal of
poisonous and obnoxious substances
11. Yards and grounds plant and grounds safety measures include
1 Proper drainage 2 Clearance signs to warn of limit
yards
clear-
ances
3 Derails and bumper blocks 4 Traffic control signs to warn pedestrian vehicular and railroad traffic 5 Proper coverings or rails for open pits tanks vats ditches etc.
12. Material-s a Materials wherever
stored should be piled stacked or racked in a manner designed to prevent tipping falling collapsing rolling or spreading Racks bins planks sleepers bars strips blocks and sheets
should be used where necessary to make the
piles stable Materials and objects that are stored in overhead places should be secured so that they will not fall and cause injury to per-
sons below
b All hazardous chemicals should be distinctively marked to indicate their nature
13. Compressed Gases Cylinders containing compressed gases should not be unduly exposed to the heat of stoves radiators or furnaces Where cylinders are stored in the open they should be protected from accumulations of snow and ice and from the sun where high
temperatures occur
b Heat increases the pressure within the cylinder or it may melt the fusible safety plugs which in acetylene cylinders melt at a temperature of approximately 210 to 220 Should a valve become frozen it should be thawed out with warm not scalding water Open flames should not be used for this pur-
pose under any circumstances
c Cylinders should preferably be stored in an upright position In many plants cylinders are held upright by straps or chains to prevent their falling over This is particularly important with acetylene cylinders
d Empty cylinders should be plainly marked EMPTY and the valves should be closed The empty cylinders should be segregated from full cylinders and returned to the manufacturer as soon as practicable
e The recommendations of the National
Fire Protection Association and State and
municipal laws and regulations should be closely observed in regard to the storage of compressed gas cylinders Cylinders should never
be allowed to fall or otherwise receive shock
14. Special precautions for oxygen cylinders Great care must be exercised in handling oxygen to prevent contact of oxygen under pressure with oils greases organic lubricants rubber or other materials of an organic nature in order to prevent explosion The following recommendations of the Compressed
Gas Association should be observed
1 Never permit oil grease or readily
combustible materials to come in contact with
oxygen cylinders valves regulators gauges or
fittings
2 Never lubricate regulators fittings or
gauges with oil or any other combustible sub-
stance .
3 Never handle oxygen cylinders or apparatus with oily hands or greasy gloves or
rags
.
4 Always clear the particles of dust and
dirt
dirt from the opening to each cylinder by slightly opening and closing the valve before
applying any fitting to the cylinder
5 Never permit oxygen to enter the regu-
lator suddenly Open the valve slowly When
opening the valve point the face of the gauge on regulator away from the operator
6 Never drape an oxygen cylinder with
etc. material such as wearing apparel rags
etc.
7 Never use oxygen fittings valves regulators or gauges for any other service except
oxygen
8 Users should never mix gases of any
type in an oxygen or any other cylinder
9 Never use oxygen from a cylinder except through a pressure reducing regulator
10 Never attempt to use regulators which
are in need of repair or cylinders having valves
which do not operate properly
11 Never attempt to repair defective
oxygen equipment unless properly qualified by knowledge and experience
15. Flammable Materials such as
paints lacquers thinners gasoline and nap-
tha should be stored and handled with provi-
sions for safety suited to the material and the
conditions of its use They should also be covered or stored in an approved type of safety
container suitable to the nature of the material
16. Explosives - Explosives should be
stored in approved type explosive magazines which are bulletproof ventilated and located
at distances from other buildings as required under the American Table of Quantity and Dis-
tance For details refer to U. S. Bureau of
Mines Information Circular 7307 on Surface
Storage of Explosives and Information Circular 7380 on Safe Storage Handling and Use of Commercial Explosives
17. Spontaneous ignition precau-
tions should be taken in connection with stor-
age of materials which may cause spontaneous ignition Rooms in which there may be explo-
sive concentrations of dust gases or vapors
should have explosion electrical fixtures
and equipment in accordance with the provi-
sions of the National Electrical Code relating to hazardous locations
18. Electrical equipment following general information should be used in conjunc-
tion with the National Electrical Safety Code
National Bureau of Standards Handbook H30
a General protection practicable transformers control boards and other accessories should be placed in special rooms to which only authorized persons have access If the use of a separate room is not feasible en-
closures should be built around those parts of
electrical equipment having exposed conduc-
tors Enclosures made of metal should be effec-
tively grounded
Warning signs should be displayed near exposed carrying parts and in specially hazardous areas such as high voltage installations Signs should be large enough to be read easily and they should be so placed as to be visible from all approaches to the danger zones They should be displayed in as many languages
as needed
Suitable insulating mats or platforms of substantial construction and providing good footing shall be placed on floors and if necessary on the frames of the machines having exposed live parts of more than 150 volts to ground so that the operator or persons in the vicinity cannot readily touch such parts unless standing on the mats platforms or insulating floors
b Grounding Fixed equipment or appliances having exposed metal frames should be grounded under any of the following condi-
tions
1 If operated at more than 150 volts to ground regardless of location
2 If located where exposed grounded surfaces as plumbing fixtures or conductive floor and wall can be reached by a person while touching the metal parts of equipment
3 If located in hazardous areas
The grounding of portable equipment should follow that of fixed equipment except 1 electrically heated appliances exempted by administrative authority and 2 motors if positively guarded under all conditions It is recommend-
ed however that motors always be grounded c Ground connections connec-
tions should be of copper and the combined re-
sistance of the grounded wire and the connection with the ground should not exceed 3 ohms for waterpipe connections nor 25 ohms for artificial grounds The actual ground circuit resistance should be kept as far as possible below the maximum permissible limits
Where a grounding wire is exposed to mechanical injury it should be protected by conduit connected at both ends to the grounding wire or by other substantial enclosure If the enclosure is of metal it also should be
grounded
d Transformers should preferably be located outside of buildings and surrounded by an enclosure of grounded metal at least 8 feet high If a building wall forms a
quickly col- part of such an enclosure all windows in the
wall should be screened or barred
Transformers inside buildings should be
in ventilated fireproof vaults having
placed
raised
sills
across
the
doorways
to
prevent
the
of leaking oil Floors and floor drains
escape
that oil will
should be so arranged
lect in drainage or storage systems provided
Air vents should be so designed
for the purpose automatically
in
case
of
fire
It
may
as to close
for introduc-
be advisable to provide equipment
fire extinguishing material into transform-
ing
Doors to transformer enclo-
er cases or vaults
or vaults should be kept securely locked
asunrdesonly authorized personnel should be per-
When the switch cannot be locked out espe-
in cially if it is located an open work area it
is advisable to station a watchman near the switch to see that it is not disturbed while the work is in progress Warnings should be given
to all operators affected before opening a circuit and again before closing the circuit after
the job is completed 19. Tools Each employer should heed
the safe condition of the tools used by his em-
ployees whether furnished by him or by them and make every reasonable effort to insure that such tools are suited both by safe design and
construction to the work to be done
b Each employer should institute and maintain a definite system of tool inspection
mitted to enter such areas e Plant wiritnhge ANlatliowniarlinEglecsthroiucladl bCeodien
accordance with and also with local codes or requirements
f current devices safe curcarrying capacity of conductors is determined by their size the material of which they are made and the manner in which they are installed If forced to carry more than the maximum safe load or limited as to heat dissipation excessive heating results Fuses or other current devices should be installed in every circuit and they should be of a size and type that will interrupt the current flow when it exceeds the capacity of the conductor Protection of this kind both for personnel and for equipment is one of the important features of any electrical installation
g Drop and extension Extension
cords should be of a type approved by the
Underwriters Laboratories Inc. and they should be labeled to show that they meet all requirements of the National Electrical Code
They should be inspected regularly Kinking or
excessive bending of the cords should be avoided to prevent breaking of the wire strands Broken strands may pierce the insulating
and repair suited to conditions c Tools in disrepair should not be used d All powered tools which might cause
injury through continued operation should the operator lose his hold should be equipped with the called dead man type of control or the equivalent whereby the power is automatically cut off when the operator loses his hold
e Portable electric power tools should be equipped with ground wires to maintain at all times an effective ground on the noncurrent carrying parts of the tool
C. FIRE PREVENTION AND PROTECTION
1. Building egress .- All buildings in which persons are employed or are assembled for any purpose should be provided with safe
and proper ways of egress or means of escape from fire sufficient for the use of all persons
accommodated or assembled within the build-
ing Such ways of egress should be kept free from obstructions and in good repair and ready for use at all times The provisions of the American Standard Building Exits Code
A9.1 should be followed b All buildings or establishments of two
or more stories in height should be provided
covering and become shock or circuit
hazards
with more than one way of egress or escape
from fire said ways of egress being so located
h Lamp fixtures and equipment For
locations where there are flammable gases or dusts lamps should be installed only in fixtures
especially designed to prevent lamp breakage and to prevent ignition of the flammable material Equipment should be of explosion
design
i Maintenance should always be tagged or locked in the open position before starting work If a lock is used for which keys
are available to other members of the organi-
zation the switch should also be tagged in such a way as to identify the individual authorized to remove the lock If two or more employees are working independently on the same circuit
affix his own lock or tag to the
esawcihtcshhould
and in such positions as to prevent the trapping of persons in the building Such ways of egress may lead to adequately constructed and properly maintained fire escapes on the outside of the building or to inside stairways provided with proper hand rails and satisfactory for emergency use Such stairways should preferably be fire resistant and lead directly to the outside at grade level All exit doors should swing in the direction of exit and should open
in such manner as not to obstruct passageways
or corridors used as way of egress and escape
from fire or panic No chairs or seats fixtures chutes materials or equipment should block or in any way jeopardize the use of ways and means provided for egress All exit doors and
windows used as means of egress in case of fire
or panic should be so arranged as to be always readily opened from the inside Locks on doors and windows if provided should not require the use of a key to operate from the inside
c All exits or means of egress as above specified should be plainly designated or marked
eral Government have developed codes of similar excellence which nevertheless vary in some details from the ASME Code Insurance com-
panies which insure steam boilers against explosion generally apply the provisions of the ASME Code _
by conspicuous signs or lights to identify the means of escape Directional signs should be provided where needed Ladders are not accept-
;
able as fire escapes
2 Operated by personnel whose competence entitles them to hold certificates granted by licensing authorities set up for the purpose
3 Regularly inspected by competent in-
2. Fire extinguishing equipment Equip-
ment suitable to the conditions and hazards in-
spection personnel b Heating boilers and miscellaneous small
volved for the extinguishment of fires should be
boilers State boiler codes exempt boilers
provided and maintained in an effective operat-
intended for low pressure usually below 15
ing condition The importance of a systematic
pounds The violence with which even the
inspection of these devices is emphasized This
smallest boiler can explode should not be under-
equipment includes built equipment such as
estimated Every vessel however small in
automatic sprinkler CO and steam lines Also
which water is heated can if its normal outlet
operated equipment such as hose and
is closed or plugged up become in fact a high-
portable fire extinguishers sand pails water
pressure steam generator and if its strength
barrels and pails and other equipment effec-
is exceeded will explode destructively The re-
tively located mounted and maintained
curring explosions of such pressure devices
b Aisles leading to and areas in front of all extinguishing equipment should be open at all times free and clear and unobstructed by materials stock and equipment of any kind
c Classes of fires and recommended extin-
indicate a too widespread failure to keep this simple fact in mind Therefore the accident preventionist should take careful account of
every fired water or steam vessel and make
sure that
guishing equipment Listed below are various classes of fires and the extinguishing equipment
which is recommended in each case
1 It is of safe construction for the pres-
sures involved
2 It has adequate means of limitation of
1 Class A Fires in ordinary combustible materials where the quenching and cooling effects of quantities of water or solutions
pressure such as
a A safety valve of adequate capacity b A disk or diaphragm that will fracture
containing large percentages of water are of
at a predetermined pressure
first importance
3 It is regularly inspected competently
Recommended extinguishing equipment operated and properly maintained
Soda and acid pump tank extinguishers or
c Steam cookers digesters glue pots etc.
se
water barrels and buckets
All pressure vessels to which steam is supplied
2 Class B Fires in flammable liquids greases etc. where blanketing effect is
essential
from an outside source should be designed insofar as it is practical for the maximum line pres-
sure Most of them are not and on such vessels
Recommended extinguishing equipment.Foam carbon tetrachloride CO dry powder pressure extinguishers sand buckets and
scoops
3 Class C Fire in electrical equipment where the use of nonconducting extinguishing agent is of first importance
Recommended extinguishing equipment Carbon tetrachloride CO dry powder pressure extinguishers
it is vitally important to install in addition to the necessary reducing valve a safety
valve on the vessel itself or on the line between
it and the pressure reducer There should be no
means of cutting off or bypassing this safety valve Inspection and adequate maintenance of the vessel including regular testing of the safety valve are vital
2. Compressed air machinery and equipment the detailed operation of this type of equipment refer to American Standard
D. PRESSURE VESSELS
Safety Code For Compressed Air Machinery
1. Fired pressure vessels- Steam boil-
The safeguarding of power boilers has been developed to such a high standard that it can be truly said that boiler explosions are entirely preventable provided that boilers are
and Equipment however the general rules listed below should be applied
a Compressors If a operated air compressor is driven by other than an electric motor including those driven by serieswound current motors a speed gover-
1 Constructed and installed in accordance with the Power Boiler Code of the American
nor should be installed on the prime mover to prevent racing of the latter from any cause
Society of Mechanical Engineers or equivalent standards Various States cities and the Fed-
Such a speed governor should act independently
of the unloader on the compressor
10
2 If the air compressor is engine or tur-
bine driven an auxiliary control to the gover-
nor should be installed to prevent racing when
the unloader operates
3 Every air compressor should be
equipped
with
an
automatic
mechanism
so
ar-
ranged that the compressor will automatically
stop its compressing operation before the
discharge pressure exceeds the maximum work-
on ing pressure allowable under this code the
weakest portion of the system to which the
compressor is connected
4 If this automatic mechanism is electri-
cally operated the actuating device should be
so designed and constructed that the electrical
contact or contacts cannot lock or fuse in a
position that will cause the compressor to continue its compressing operation
b Switches and other electrical apparatus the compressor is driven by an electric
motor all electrical switches and other electri-
cal apparatus should be guarded as required by the National Electrical Safety Code and the
National Electrical Fire Code
c Belt pulley gear and shaft guards All belts pulleys gears flywheels and shafts should be guarded as outlined in Part II E of
these standards
d Lubrication Specific requirements for
lubricating oils are intentionally omitted from
these standards In the operation of air com-
pressors many of the troubles experienced can
be traced to the use of a poor or unsuitable
grade of oil in the air cylinders The importance of good air cylinder oil is generally recognized by the leading manufacturers of equip-
ment and of lubricants and it is therefore sug-
gested that their recommendations be followed
Air compressor cylinders should be lubricated by means of visible forced lubri-
cators
Only enough oil should be used to furnish satisfactory lubrication in order to avoid carryover to intercoolers aftercoolers receivers and other parts of the system
e Cooling water cooling is used
a visible indication of water flow should be pro-
vided
f Operation and maintenance Compressor valves should be inspected checked for broken springs and tested for tightness frequently and at regular intervals Leaky valves should be made tight by repair or replacement Accumulations of carbon or other foreign mat-
ter should be removed
2 Unloaders and governor controls on air
compressors should be inspected at frequent
and regular intervals and should be maintained
in good working condition Where emergency overspeed stops are installed such devices should be tested at regular intervals to insure their operation within safe limits of overspeed
3 If the compressor is steam driven the -
throttle valve should be closed and tagged and
the cylinder drain cocks should be opened before starting repairs or other work on the com-
pressor
If 4 line
the compressor is motor driven the
line switch supplying the motor should be
opened and tagged or locked before starting
repairs or other work on the compressor
5 Under no circumstances should kero-
sene gasoline or other flammable solvents be
introduced into the compressor cylinders the
piping or the receiver Soapy water or any suitable toxic nonflammable solution may be used for cleaning such portions of the
system
g Aftercoolers Aftercoolers should be designed to withstand safely the maximum pressure in the air discharge piping
2 The advantages to be gained by using aftercoolers are of sufficient importance to warrant consideration of such equipment on at
least new installations Aftercoolers reduce the
temperature of the air discharged by the compressor to a point at which most of the mois-
ture and oil vapor condenses and can be removed
3 The removal of the moisture tends to prevent water hammer in the air lines The condensation of oil vapors tends to prevent their being carried over to pipe lines receivers and other parts of the systems
4 Where pipelines and receivers have become coated with oil because of improper lubrication of the compressor explosive mixtures of air and oil vapor may be formed at high temperatures Consequently overheating should be
avoided and oil accumulation should be immedi-
ately removed
5 The use of aftercoolers tends to maintain more nearly uniform air temperatures on the discharge side of the system thereby minimizing the strains resulting from alternate expansion and contraction of pipelines
h Piping - 1 Installation - Piping should meet the requirements of the American Standard Code for Pressure Piping In its installation adequate provision should be made for expansion and contraction and to counteract pulsation and vibration Steam and air piping should be equipped with adequate traps or other means for removing liquid from the lines Air discharge piping should be so installed that pockets where oil may accumulate are avoided
2 Insulation piping should be adequately insulated where it is exposed to
contact
3 Compressor air Provision should be made to prevent drawing air containing flammable or toxic gases vapors or dusts into the compressor and to prevent steam water or waste of any sort from being blown
11
or drawn into the compressor intake No valve
should be installed in the air intake pipe to an
air compressor
4 discharge piping discharge piping from the compressor to the air receiver should be at least as large as the discharge opening on the air compressor Because the discharge pipe becomes hot no wood or other flammable material should be permitted
to remain in contact with it
i Valves Stop valves in the air line
between the compressor and the air receiver are not recommended In every case where a
stop valve is so installed one or more springloaded safety valves should be installed between the compressor and the stop valve The total capacity of such safety valves should be sufficient to limit the pressure in the air discharge piping to 10 per cent above the relieving pressure of the safety valves on the air receiver
2 Any stop valve which may be installed in the air discharge piping should be so located that it can be inspected and cleaned at definite
regular intervals Stop valves should preferably be of the gate type and not of the globe type If a globe valve is used it shall be so installed
that the pressure is under the seat and that the
valve will not trap condensation
3 Every driven air compressor should be provided with a manually operable throttle valve in the steam supply line in a readily accessible location
4 stop valve should be installed between the air receiver and each piece of stationary utilization equipment at a point convenient to the operator thereof
5 A stop valve should be installed at each
outlet to which an air hose may be attached
j Receivers Construction Air re-
ceivers should be constructed in accordance with the 1937 Edition of the A.S.M.E. Code for
Unfired Pressure Vessels.2 The operating pressure should be based on a factor of safety of not less than 5. Inspection openings should be provided in all air receivers 18 inches or more in diameter
2 Installation receivers should be so installed that all drains handholes and manholes therein are easily accessible Air receiv_ ers should be supported with sufficient clearance to permit a complete external inspection
and to avoid corrosion of external surfaces Under no circumstances should an air receiver
be buried underground or located in an inaccessible place The receiver should be located as
close to the compressor or aftercooler as is pos-
sible in order to keep the discharge pipe short
The receiver should be located in a cool place to facilitate the condensation of moisture and oil vapors
2 Published by the American Society of Mechanical Engineers 29
W. 39th St. New York City
3 Drains and traps drain pipe and valve should be installed at the lowest point of every air receiver to provide for the removal of accumulated oil and water Adequate automatic traps may be installed in addition to
drain valves The drain valve on the air re-
ceiver should be opened and the receiver com-
pletely drained frequently and at such inter-
vals as to prevent the accumulation of excess
amounts of liquid in the receiver 4 Gages and valves.Every air receiver
should be equipped with an indicating pressure gage so located as to be readily visible and with one or more spring safety valves
The total relieving capacity of such safety
valves should be such as to prevent pressure in the receiver from exceeding the maximum allowable working pressure of the receiver by more than 10 percent No valve of any type should be placed between the air receiver and
its safety valve or valves k Working space the location of
compressors and related equipment provision should be made for safe access to all parts of the equipment for operation maintenance and repairs
1 Aisles space should be adequate should be independent of work and storage areas and should be defined by floor markings
m Safety valves All safety valves used should be constructed installed and main-
tained in accordance with the A.S.M.E. Code
for Unfired Pressure Vessels
2 Safety appliances such as safety valves indicating devices and controlling devices should be constructed located and installed so that they cannot be readily rendered inoperative by any means including the elements
3 All safety valves should be tested frequently and at regular intervals to determine whether they are in good operating condition
E. MACHINERY GUARDING
1. Railings and toeboards standard railings and toeboards are specified in this manual they should conform to the following specifications
a Railings should be 42 inches in height except where otherwise specified and should be equipped with toeboards unless the space be-
tween the lower rail and floor is filled with
material as specified in b b They should be of substantial construc-
tion should be permanently fastened in place and should be smooth and free from protruding nails bolts and splinters An intermediate
rail should be provided between the top rail and
the floor unless this space is filled with substantial wire mesh expanded metal or other
suitable material
c If constructed of pipe the inside diame-
12
ter of the pipe should not be less than 1-1
inich nch
d If constructed of metal shapes or bars each part should have a cross section at least
equal in strength to that of a 1-1 by 16-
inch angle iron
should
e If constructed of wood the posts should
not be smaller than the sizes commercially
known as 2- by inch or 3- by inch The top
rail should be at least as large as the size
known as 2- by inch The intermediate rail
should not be smaller than the size commer-
cially known as 1- by inch
f Posts and uprights should be spaced not
more than 8 feet apart
g Toeboards should be at least 5-1 inches in height and be constructed of wood
metal metal grill with openings not exceeding
1 inch or other suitable material
h Intermediate rails and toeboards and
top rails which are attached to the side of the posts should be placed on the side of the posts away from the engine belt floor opening etc.
to be guarded so that any blow or pressure against them will be taken up by the posts instead of tending to push the rails away from
the posts 2. Guards a If guards are made of
wire mesh perforated or expanded metal crossed strips or bars of wood or metal etc.
the width or diameter of the holes should not .
exceed 2 inches If parallel strips or bars of wood or metal are used the space between them
should not exceed 1 inch There should be no
openings more than 1/2 inch in width or diameter within 4 inches of any gear belt pulley or
flywheel or other dangerous moving part
Wood slats should be smooth and free from
splinters and the holes in perforated or expanded metal should be free from sharp cut-
ting edges b The supporting frames should be of
substantial construction such as angle iron varying from 1 by 1 by 1/8 inch to 1-1 by 3/16 inch or iron pipe with inside diameter varying from 3/4 inch to 1-1 inch according to the weight of the filling material the size of the panels and the exposure of the guard to collision with trucks etc. Any panel which
measures more than 42 inches in both width
and length should be substantially supported
across its narrowest dimension at intervals of
not more than 42 inches
c The filling material should be bolted riveted or otherwise securely attached to the frame in such a manner that no sharp points or edges will be exposed Bolts should be at least 3/16 inch in diameter and should be spaced not more than 10 inches apart Flat bars or strips used for clamps should not be smaller than 3/4 by 1/8 inch if of iron or 1 by 1 inch
if of wood Perforated or sheet metal may be
spotwelded to angle iron frames d The thickness of material used for
guards should not be less than is specified in the following table
Material
Clearance from moving part at
all points
Largest mesh Opening allowable
C Minimum gauge U. S. Standard
or thickness
Woven
Expanded metal ..c:sccsssscescecceecee
inches
Under 4 inchesinches crosses
4-15 inches ..........-...
inches
Under 4 inches ..........
4-15 inches ........0..
i nch sees # 16
2 inches 0... | 12
j
iinncch h ooo.
18
2 inches ....-..--J 13
Perforated
metal
ere ........0..:..c:eceeee _ Under 4 inches pananneatl
4-15 inches oo...
inch ee: oer
2 inches 0.00.
- 20 14
Sheet metal
ccccccccccccccccccccsssssssvsssesseneeeeee
Wood or metal strip crossed .................-
Under 4 inches 2.0.00...) occ ece eee eseeeeesee eee 4-15 inches ...........,,[ ccvevecessseseetesstesesesseeceees
22 22
Under 4 inches ....... :
4-15 inches ...............
inch wrereeerenrcenee 2 inches o.........-.
Wood % inch metal 16 Wood 4 inch metal 16
Wood or metal strip not crossed ..........
Under 4 inches a. |
4-15 inches .........
12 inch width .......... 1 inch width ...........
Wood % inch metal 16 Wood inch metal 16
Solid wood,,sevssestsanneesrennescesescsecenniaaesesece|
vecucusatsussestanaesserecssssessece |
coeseeseeeeaetseecieseeetenseeess '
aasestessessenseneeseseenserees ceneeareanersnsea
1 If plywood is used it should be not less than 3 inch thick and not less than 3 ply
13
e Guards should be securely and permanently fastened in place except as otherwise specifically provided
3. Belts pulleys etc All vertical and
inclined belts should be completely enclosed or
effectively guarded However belts that
1
inch
or
less
in
width
need
be
guarded
are
only to
6 inches from the nip point
b All belts regardless of shape size
epnocsliotsieodn oorr refufnencitinvgelsypegeudarsdhoeudld be completely
4. Vertical and inclined belts If the
guard is within 4 inches of a belt or
should extend from the floor
pulley it
to a height of at least 6 feetorIfpltahtefogrumarldeveils
within 15 inches but not within 4 inches of the belt or
pulley it should extend from the floor
or platform level to a height of at least 5 feet
except in each case as follows
1 If any part of a pulley is more than 5 feet but less than 7 feet above the floor
form
level
the
guard
should
extend
or platto the
of the pulley but need not exceed
top
7 feet above the floor
a height of
or
also applies to clutches
platform
level
This
2 If the top of any pulley is not more
than 5 feet above the floor the guard need not
extend above a point midway between the
of
the
pulley
and
a
height
of
5
feet
top provided
that in no case should it extend less than 42
inches above the floor unless it
as
well
as
all
sides
of
the
belt
covers
and
the
top
which case there should be
pulley in
to height
no requirement as
3 If it is an overhead belt the guard
be
a
basket
or
box
suspended
from
may above and
extending across the bottom of the pulley and
all around the pulley to a height of 6 feet ex-
height when the guard should extend to the top
need not exceed 7 feet
b Where no pulley hazard is involved a
standard railing placed not less than 15 inches
or more than 20 inches from the belt measured
horizontally
be
from
the
top
of
the
railing
will
considered a sufficient guard
b Where the upper run of the belt is more
than 7 feet above the floor or platform level and
the lower run is within 7 feet of the floor the
pulleys should be guarded on sides and outer
face to a height of 7 feet above the floor
platform level and the belt
or
two pulleys should extend agtualredastbet15weeinnchtehse
above the lower run but need not exceed a
maximum of 7 feet and should be a minimum
of 42 inches above the floor or platform level
unless completely enclosed Unless the guards
extend across the inner face of each pulley to a
height of seven feet the guard for the lower
run of the belt should be carried to the
height
as
the
pulley
guards
at
all
points
same
within
15 inches horizontally from the inner face of
either pulley
c Where pulleys are so located and of such
dimensions as to permit passage between the
upper and lower runs of the belt the space be-
tween the pulleys should be completely barred
or should be provided with a
stantially guarded on sides andptaospsaagnedwbaoytstuobm-
6. Cone pulleys and belts Cone pul-
ley belts more than 2-1 inches in width
should be equipped with mechanical belt shift-
ers and all cone pulley belts should be guarded
to a point 3 inches above the nipping point of
the belt and pulley and not less than 3 feet 6
inches from the floor or platform where
part
of
the
lower
cone
is
less
than
3
feet
any above
the floor or platform level
b Where both upper and lower
within 7 feet of the floor or
cones arc
for example on some vertical pdlraitllfoprrmeslseevselanads
other machines and for which conditions
such that mechanical belt shifters
are
are not re-
quired and none are furnished the belt and
cone pulleys should be guarded as specified in
Part II E 2 above with a hinged self closing
section to permit shifting
c All belts regardless of width should be
provided with belt shifters when joined to-
gether with a metallic or other form of fastener
which by construction or wear will constitute
a hazard
c If the belt is inclined the height of the
guard or distance of the guard or railing from
the belt should be such that the vertical clear-
ance between the floor and the lower run of the
belt at any point outside of the guard or
ing
should
not
be
less
than
6
feet
6
rail-
inches
5. Horizontal belts Where both
of the belt are within 7 feet of the floor
runs
ifnocrhmesleavbeolvethethgeuard should extend at loerasptla1t5-
7
feet
above
the
upper run
floor In
or
to
a
height of
no case should the
guard extend less than 42 inches above the
floor except that if it covers the top as well
all
sides
of
the
belt
and
pulley
there
should
as
be
no requirement as to height
a 7. Machine control Every machine
should be equipped with a loose pulley clutch switch or other adequate means readily accessible for the purpose of stopping the machine quickly
b Machines on which two or more
;
work should be equipped with
persons
one or more con-
trols so located that more than one of these
persons can quickly disconnect the machine
from the source of power
c Machines operated from a number of
different places should be provided with read-
ily accessible means for shutting off the power
and means of locking controls to protect men
working on the machines against unexpected
starting
14
a=
8. Belt shifters Every set of tight
and loose pulleys should be equipped with a permanent belt shifter so located as to be within easy reach of the operator The belt shifter
should be so constructed as to make it impos-
sible for the belt to creep from the loose pulley
to the tight pulley
b Every belt shifter should be equipped
with an interlocking device which will prevent
accidental shifting shifters
belt c Where overhead
shifters are not
located directly over a machine or bench the
shifting lever should be cut off 6 feet 6 inches
above floor level
9. Location on shafting a Every
pulley near a shaft hanger shaft bearing or other fixed object should be placed so as to al-
low a side clearance at least 1/2 inch greater
than the width of the belt between the pulley
and the nearest part of such shaft hanger shaft
bearing or other fixed object or a guard should
be placed adjacent to the pulley to prevent the belt from running off on the side next to the
shaft hanger shaft bearing or other fixed
object b Where pulleys must be closer together
on the shaft than the width of the wider belt
plus 1/2 inch the pulleys should be guarded so that the belt on either pulley cannot run off
between the pulleys
10. Gears gears should be solidly en-
closed except that gears without spokes or holes in the web may be guarded by a band guard with flanges extending beyond the root
of the teeth
11. Keys and keyseats Every projecting key in revolving shafting where exposed to contact should be cut off or enclosed
b Every keyseat in revolving shafting where exposed to contact should be filled or
enclosed
12. Flywheels and shafting Flywheel Flywheels located so that any part is six 6 feet or less above the floor or platform should be guarded in one of the following ways
1 With a standard railing railing must be placed not less than six 6 inches nor more than twenty 20 inches from the wheel provided that it should be not less than fifteen 15 inches from the spokes of wheel or projections If wheel extends into pit or within two 2 inches of the floor a standard toeboard should be installed If passage over jour-
nal or bearing is necessary the passageway should be provided with a standard railing and
toeboard
2 With an enclosure of sheet perforated or expanded metal or woven When such guard is placed less than six 6 inches from wheel it should be not less than six 6 feet high except if flywheel is less than six 6 feet high the guard should be not less than the
height of the wheel from the floor In no case should guard be less than three 3 feet six 6 inches high unless wheel is completely enclosed including the top Where clearance of guard from flywheel at any point is under four 4 inches the largest mesh or opening allowable should not be more than half 1/2 inch Where such clearance is from four 4 to fifteen 15 inches largest mesh or opening allowable should not be greater than two 2
inches
3 Flywheels with smooth rims five 5 feet or less in diameter other than wheels having solid web centers where the preceding methods cannot be applied should be provided with a disc having a smooth surface and edge attached to the flywheel in such a manner as to cover the spokes of the wheel on the exposed side The disc may be four 4 inches smaller
in radius than the radius of the inner surface
of the wheel if it is desired to provide space for bar in turning over the wheel Keys and other dangerous projections not covered by
disc should be cut off or covered
4 An adjustable guard may be used where it is necessary to start engine or for making
adjustments
5 A slot opening for jack bar will be per-
mitted
6 Spokes of pulleys balance wheels or flywheels other than on a prime mover the bottom of which is six 6 feet or less above the floor or other working level should be protected by filling in the spokes or by guarding as required for belts
b Shafting exposed parts of transmission shafting six 6 feet or less from floor or working platform should be protected by a stationary casing enclosing shafting completely Horizontal shafting may be guarded by a trough enclosing sides and top or sides and bottom of shafting as location requires
Shafting under bench machines should be enclosed by a stationary casing or by a trough at sides and top or sides and bottom as location requires The sides of the trough should
come within at least 6 inches of the underside
of the table or if shafting is located near floor
within 6 inches of floor In every case the sides
of trough should extend at least 2 inches below or above the shafting as the case may be
Revolving shafting and spindles forming part of and integral with individual machines where part creates a hazard should be en-
closed or covered
13. Presses Preferred guarding meth-
Protection from the dies of every press
except metal presses should be provided by means of the following
1 Complete enclosure or 2 Full automatic feed or
3 Semiautomatic feed with ram enclosure
or
4 Limited opening 3/8 inches between
dies
The maximum width of opening in the enclosure or between the enclosure and working surface shall be not greater than shown in the following table
Distance of opening from nip point inches
Maximum width of opening inches
0 2to 3to
2 cr:
3 cece
lec ccceeeensccesccacetsescecavsnseateneseees
5
eee cccccccccecacsecescseseataeseseseneeeess
5to
6
eee ceccccsccesesssecsessatateceecccccseeeseess
6 to
cr
7to 8
cece ccccccecesecetessecseseteseesecccoces
3/8 1/2 58 % 7/8 1
b Alternative guarding methods in case none of the methods in a above can be applied then a device which will reasonably prevent injury by contact with dies should be
installed as follows
1 A hand tripping device for each person engaged in the operation of a single press so designed and arranged as to prevent tying wedging or otherwise securing one handle or button and operating the press with one hand only or
2 An interlocking gate guard operated by the tripping device of the press which interposes a barrier on the front and sides of the ram before the plunger descends and will not permit the press to operate until the hand or
hands of the operator have been removed from the danger zone or
3 A sweep or gate guard with the sweep arm or gate interconnected to the ram and so designed and constructed as to sweep the hands of the operator from the die zone as the ram
descends with each single sweep arm provided with a flag or barrier attached thereto so that
the operator cannot reach behind the sweep or 4 A pull protective device attached to
the operator's hands or arms and connected to
the ram or outer slide of the press in such a
way that the operator's hands or fingers will be withdrawn from the danger zone as the ram or outer slide descends and designed so that where the open distance between the top of the work and the lower extremity of the punch is less than 2 inches that the multiplying action of this guard should be such that the hands will be withdrawn a safe distance from the nip point during the first quarter of the stroke
c Special hand tools should be accepted only as an accessory to the guards listed herein and not as a substitute for any guard
d Guards which are attached to the ram
and which move downward so that the opera-
tor's hand or fingers may be caught between the gate and lower die should not be used
e Where the speed of the ram is so slow
that the operator might beat the ram on the
down stroke after the press has been tripped no device should be used which permits the insertion of the hands until the completion of the downward stroke without stopping the ram
f Every hand power press should be
equipped with 1 An arrangement which disconnects the treadle or operated lever from the clutch mechanism after each stroke or 2 A device that will within its own ac-
tion automatically lock the clutch mechanism into place so that the press cannot make a sec-
ond stroke until the treadle or hand lever is
again pressed to its lowest position or 3 By some other method which will accomplish the result outlined above unless the danger zone protection is such that the guard remains in its protective position during the second stroke
of the press
g Platen presses presses with or without mechanical power should be provided with one of the following 1 An automatic feed which does not require the operator's hand to be placed between the platen and bed or an automatic stop which will prevent the platen from closing if the hand or hands of the operator are caught between the platen and the bed or 2 A guard gate or sweep motion which will throw the operator's hands out of the way as the press closes If of the type which lifts the hands out of the danger zone the guard should rise at least 4 inches above the platen as the press closes and should descend by gravity or by mechanical means The guard should be arranged so that it will prevent a shear between the guard and the top of the platen or 3 Any other device that will prevent the platen from fully closing before the operator's hands are removed from between the platen and the bed
14. Abrasive wheels following stan-
dards for the operation of abrasive wheels
should be supplemented by the American Standard Safety Code for the Use Care and Protection of Abrasive Wheels to insure that full safety measures are taken in their opera-
tion
a Handling grinding wheels are breakable and some are very fragile Great care should be exercised in handling and storage to prevent damage which might cause a wheel to
fly apart when brought up to speed The fol-
lowing rules which are based on experience
should always be observed
,
1 Handle wheels carefully to prevent
dropping or bumping
2 Do not roll wheels hoop fashio.n
3 Use trucks or suitable conveyors which
will
will provide proper support for all transporta-
3 Exemption to 2 and 3 Where it is impractical to comply with 2 and 3 because of large size of wheel danger of damage when rolling the wheel will be minimized if floor is smooth clean and free from obstructions The use of a strip of rubber or cork matting will further reduce the danger
16
tion of wheels which cannot be carried by
hand.3
4 Stack wheels carefully on trucks Do not pile heavy castings or tools on top of them nor permit wheels to topple over
b Storage racks bins or drawers should be provided to accommodate the various types of wheels used Wheel storage rooms
should not be subject to extreme temperatures
and should always be kept dry
c Inspection Immediately after unpack-
ing all wheels should be closely inspected to make sure that they have not been injured in transit or otherwise As an added precaution
wheels should be tapped gently while suspended with a light implement such as the handle of a screw driver for light wheels or a wooden mallet for heavier wheels If they sound cracked they should not be used Wheels must be dry and free from sawdust when applying the test otherwise the sound will be deadened It should also be noted that organic bonded wheels do not emit the same clear metallic ring
as do vitrified and silicate wheels
d Rigidity Grinding machines should be sufficiently heavy and rigid as to
minimize vibration
Where practical the machines should be securely mounted on substantial floors benches foundations or other adequate structures
e Guards Every stationary abrasive wheel and portable wheels used in stationary position should be equipped with guards of the hood type strong enough to withstand the shock of a bursting wheel A hood type or band guard strong enough to withstand the shock of a bursting wheel should be used on every portable wheel where the operation and the nature
of the work will permit f Spindle spindle and nut and
flange projection if any should be guarded g Mountings and fastenings
should be so mounted as to maintain proper
alignment with the wheels and the strength of the fastenings should exceed the strength of
the hood
h Dust exhaust provisions on machines used for dry grinding and other operations where dust is produced should have provisions made for connection to an exhaust
system For detailed recommendations reference is made to American Standard for
Grinding Polishing and Buffing Equipment Sanitation Z43
i Exposures permitted Bench and floor stands The maximum angular exposure of the grinding wheel periphery and sides for
hoods used on machines known as bench and floor stands should not exceed 90 or fourth
of the periphery This exposure should begin at a point not more than 65 above the hori-
zontal plane of the wheel spindle
Wherever the nature of the work requires
contact with the wheel below the horizontal
plane of the spindle the exposure should not exceed 125 This exposure should begin at a
point not more than 65 above and extend to a point not more than 60 below the horizontal plane of the wheel spindle
2 Cylindrical grinders The maximum
angular exposure of the grinding wheel periphery and sides for hoods used on cylindrical grinding machines should not exceed 180 This exposure should begin at a point not more than 65 above the horizontal plane of the wheel
spindle 3 Surface grinders and cutting machines
-The maximum angular exposure of the grinding wheel periphery and sides for hoods used on cutting machines and on surface grinding machines which employ the wheel periphery
should not exceed 150 This exposure should
begin at a point not less than 15 below the horizontal plane of the wheel spindle
4 Swing frame and portable grinders.The maximum angular exposure of the grinding wheel periphery and sides for hoods used on machines known as swing frame and portable grinding machines should not exceed 180 and the top half of the wheel should be pro-
tected at all times
5 Top grinding operations where the work is ground on the top of the wheel the exposure of the grinding wheel periphery should be as small as practicable with a maxi-
mum exposure of 60
j Exposure adjustment of the type described in 1 and 2 under Expo-
sure Permitted where the operator stands in front of the opening should be constructed so that the peripheral protecting member can be adjusted to the constantly decreasing diameter of the wheel The maximum angular exposure
above the horizontal plane of the wheel spindle as specified in 1 and 2 should never be exceeded and the distance between the wheel periphery and the adjustable tongue or the end of the peripheral member at the top should never exceed 1/4 inch
k Work Work rests should be kept adjusted close to the wheel with a maximum distance of 1/8 inch to prevent the work from being caught between the wheel and the rest The work rest should be securely clamped after
each adjustment The adjustment should not be
made while the wheel is in motion
15. Miscellaneous machine guarding
Revolving oscillating or reciprocating parts of engines and other machines
1 Every projecting set screw in moving parts where exposed to contact should be
guarded 2 Cranks or crank discs crank shafts
connecting rods where exposed to contact
should be guarded
17
3 Eccentrics and cams where exposed to contact should be guarded
4 Machine parts having a reciprocating or oscillating motion such that a shearing or crushing hazard is created should be guarded
5 Any moving part of a machine which
at any time leaves a space of less than 18 inches
between it and any fixed object not a part of the machine or between it and a moving or stationary part of any other machin~ should be guarded
b Oiling devices machines lubricat-
ed while in motion and having lubricating de-
vices so located as to make it hazardous to
reach them should be equipped with an automatic oiling device or some equally efficient means to protect the oiler
Machines shut down for oiling or maintenance should be marked locked or otherwise protected so as to prevent starting the machine
while such work is in progress
c Projecting parts on shafts projecting part on a revolving shaft such as a collar clamp pin coupling oiling device etc. where exposed to contact which should include exposure while oiling machinery in motion should be guarded
d Revolving stock revolving stock projecting from machines should be guarded by pipe enclosure or other means to prevent
contact with the stock
e Noise reduction is desirable to re-
duce to the minimum the noise incident to the
operation of machines especially where there are a number placed close to each other
16. Fans blades of every fan open to
contact should be guarded in accordance with
Part II E of these standards except that fans more than seven feet above the floor or work-
ing level need not be guarded providing the
blades cease to revolve before any work of a character which would expose any person to
contact with such fan is permitted This standard also applies to the ordinary office fan
17. Revolving drums and cylinders Revolving barrels drum or other containers where exposed to contact should be guarded by an enclosure or standard guard rail in accord-
ance with Part II E of these standards
b Tanning drums where exposed to contact should be guarded by an enclosure built in accordance with guarding as specified under Part II E to a height of 6 feet
c Every drum or other revolving container which must be loaded or unloaded should be equipped with a brake or lock which will enable the operator to lock the drum while loading or unloading it
18. Counterweights tension weights and springs Every counterweight where exposed to contact should be enclosed or equipped with a safety chain that will prevent the weight
from falling to a distance of less than 7 feet from the floor or working level
b Every tension weight exposed to contact should be enclosed or securely fastened to
the tension bar
c All springs should be guarded or otherwise equipped to eliminate any hazard due to breakage of spring or failure of the mounting
19. Lathes and automatic screw machines
-Chucks and face plates should be free from projections and dogs if used should be of the
safety type circular in shape with no projections beyond the periphery
Chip guards to catch flying chips particularly in the case of high speeds used in the softer metals should be provided
Rotating stock in turret lathes and automatic
screw machines should be completely enclosed
pipe in
used
long
enough
to
contain
the
longest
stock
Suitable shields and oil catchers should be
provided to prevent slipperiness from the oil
thrown from automatic screw machines
a Drill presses All projections on the
rotating spindle and as much of the spindle itself as possible should be guarded
Spindle drive belts when in range of the operator's head or body should be guarded against both contact and breakage
b Drop hammers drop hammer the operation of which requires the hands to be placed between the dies should be provided with a positive stop that will prevent the descent of the hammer until the operator's hands
are withdrawn
A shield or screen should be provided for every drop hammer except where guarded by location when the operation is such that sparks
or scales are liable to be thrown off
On every board drop hammer a substantial guard should be provided around the board above the roll to prevent the board falling in
case the board breaks or comes loose from the
ram
c Planers and shapers metal The spaces between the ways of planer frames should be filled in smoothly with heavy sheet
metal to eliminate the shear hazard
Where clearance from fixed objects is inadequate men may be caught by the stroke of planer or shaper in such cases space to allow for the maximum possible stroke should be railed off in such manner as to give protection without creating a shear hazard between the railing and the planer table or the work carried on it
d Metal shears are two main types of metal alligator and squaring The latter may be either power or operated All should be guarded
1 Alligator shears shears are used to cut rods bars strap etc. They are
18
aee
arranged to run continuously the material being inserted as the jaw opens In cutting short pieces the operator is likely to get his fingers under the knife Also he may stumble or trip in handling the stock and get caught Many in-
juries occur through lack of care in sorting out
hard metal which might fly when cut or throw chips from itself or from the knife If fairly uniform material is handled mechanical feed can readily be devised In junk yards however
this is not feasible Even in such cases it is usually feasible to guard this machine by running a heavy shaped metal strap horizontally around the moving upper jaw with the lower edge of the strap just far enough above the cutting edge of the fixed jaw to allow the material to be inserted under it
2 Squaring Injuries usually result from the fact that where the operator's foot is on the treadle he is in poor balance with the added fact that the necessary angle set of the knife is likely with thick material or a dull knife to draw the material under it and the operator's hand with it
Squaring shears either mechanical foot or hand power and fed by hand shall have the knives substantially guarded This guard may be a fixed barrier set not more than threeeighths 3/8 inch above the table or the material being sheared Automatic clamps shall be acceptable as guards when outs are filled in so that the fingers of the operator cannot enter
the danger zone
F. WOODWORKING MACHINES
1 Band saw or band Band wheels
of band saws or band knives and all parts of the blade should be enclosed or guarded except the part between the guide and table that is necessary for the thickness of the material being cut If a metal guard is used it should be of not less than 20 U. S. Standard Gauge If other material is used the guard should be of equal strength and firmness
2. Band resaw wheels of band re-
saws and all portions of the blade should be enclosed or guarded except the portion between the guide and table that is necessary for the thickness of the material being cut If a metal guard is used it should be of not less than No. 20 U. S. Standard Gauge If other material is used the guard should be of equal strength and firmness The feed rolls should be enclosed except such part as may be necessary to feed
stock
3. Cork cutter Circular knife type. type. A hood should be provided that will cover the knife at all times to at least the depth of the
cutting edge The hood should automatically adjust itself to the thickness of and remain in contact with the material being cut at the point where the stock encounters the knife or it may
be a fixed or manually adjusted hood or guard provided the space between the bottom of the guard and the material being machined does not exceed 3/8 inch at any time
The exposed parts of the cutter blade under the table should be guarded
b Band knife type Band wheels of band knives and all parts of the blade should be enclosed except that part between the guide and
the table that is necessary for the thickness of
the material being cut If a metal guard is used
it should be not less than No. 20 U. S. Standard
Gauge If other metal is used it should be of equal strength and firmness
4. Circular rip saws hood should be provided that will cover the saw at all times to at least the depth of the teeth
The hood should automatically adjust itself
to the thickness of and remain in contact with
the material being cut at the point where the
stock encounters the saw or it may be a fixed
or manually adjusted hood or guard provided the space between the bottom of the guard and the material being cut does not exceed 3/8 inch
at any time
The hood or other guard should be so designed as to prevent a back or a separate attachment that will prevent a kickback should be provided kickback devices should be effective for all thicknesses of
materials that are cut
Except when grooving dadoing or rabbeting a spreader should be provided and fastened securely at the rear of saw in alignment with saw blade It should be slightly thinner than
the saw kerf and slightly thicker than the saw disc
The exposed part of the saw blade under the table should be guarded
5. feed circular rip saws hood or guard should be provided that will cover the saw at all times at least to the depth of the teeth The hood or guard need not rest upon the table nor upon the material being cut but should extend to a line not more than 3/8 inch above the plane formed by the bottom of the feed rolls
The feed rolls should be enclosed except such part as may be necessary to feed stock
A spreader should also be provided and fastened securely at the rear of saw in alignment with saw blade except where a roller wheel is provided back of the saw The spreader should be slightly thinner than the saw kerf and slightly thicker than the saw disc kickback dogs shall be provided in front of the saws
The exposed part of the saw blade under the table should be guarded
6. feed band rip Band wheels of feed band rip saws and all portions of the blade should be enclosed or guarded except the portion between the guide and table that is
19
necessary for the thickness of the material be-
11. Jointer or buzz planers cylindrical
ing cut If a metal guard is used it should be of not less than No. 20 U. Standard Gauge If other material is used the guard should be of
cutting head should be provided A guard which adjusts automatically over the
cutting head should be provided All exposed
equal strength and firmness The feed rolls should be enclosed except such
part as may be necessary to feed stock 7. Circular cross cut saws hood should be
provided that will cover the saw at all times at least to the depth of the teeth
parts of cutting head should be guarded Where equipped with automatic feed the
feeding mechanism should be guarded Where knives are exposed beneath the table
they should be guarded 12. Combination woodworking machines.-
The hood should automatically adjust itself
Each point of operation of any tool should be
to the thickness of and remain in contact with
the material being cut at the point where the
guarded as required for such tool in a separate machine The drive should be so arranged that
stock encounters the saw or it may be a fixed
or manually adjusted hood or guard provided the space between the bottom of the guard and the material being cut does not exceed inch at any time This rule should not be applied to
only the tool in use would be operating
13. Automatic lathes hood or
cover
should be provided enclosing the cutter blades
except at the contact points while the stock is
being cut
circular cross cut saws with stationary tables where the saw moves forward when cutting
14. Mortising Mortising machines except hollow chisel mortisers should be
Circular cross cut saws with stationary
tables where the saw moves forward when cut-
provided with thumb stops at each side of the
chisel
ting should have a hood or guard securely fast-
15. Chain mortisers should be
ened to the table that will cover the saw in all
guarded by enclosure on top
positions The hood or guard should extend at
16. Moulders matchers and stickers
least two inches in front of the saw teeth when
should be guarded with hoods or other enclo-
the saw is in its back position
sures that should be so arranged and maintained
The exposed part of the saw blade under the
as to guard effectively all cutting heads and
table should be guarded over its entire travel
knives
8. Swing cut saws guard should be
Feed rolls should be enclosed except such
provided that will cover the saw and such guard
part as may be necessary to feed stock
should adjust itself to the thickness of the stock
17. Panel raisers raisers should be
being cut
guarded with hoods or other enclosures so ar-
There should be an effective device to return
ranged and maintained as to guard effectively
the saw automatically to the back of the table
all cutting heads and knives
when released at any point of its travel
Feed rolls should be enclosed except such part
If a counterweight is used all bolts support-
as may be necessary to feed stock
ore
ing the bar and weight should be provided with
18. Planers should be guarded with
cotter pins A bolt should be put through the
hoods or other enclosures so arranged and main-
a
extreme end of the counterweight bar to prevent
tained as to guard effectively all cutting heads
dropping of weight or where the weight does
and knives
not enclose the rod a safety chain should be
Feed rolls should be enclosed except such part
attached to it to prevent dropping
as may be necessary to feed stock
Limit chains or other positive stops should
19. Drum sanders exposed parts of the
be provided to prevent the saw from swinging drum except that portion where the material
beyond the front edge of the table
comes in contact with the abrasive surfaces
9. Circular resaws hood should be pro-
should be guarded
vided that will cover the saw at all times except
Feed rolls should be enclosed except such part
where the material is being cut
as may be necessary to feed stock
A spreader should also be provided and fas-
20. Shapers The cutting heads of wood
tened securely at the rear of saw in alignment
shapers should be provided with a guard that
with the saw blade except where a roller wheel
will prevent the hands of the operator from
is provided back of saw The spreader should be
coming in contact with the knives This rule
slightly thinner than the saw kerf and slightly
need not apply when templates are used which
thicker than the saw disc
will effectively keep the operator's hands away
Feed rolls shoulbde enclosed except such part
as may be necessary to feed stock
from the knives or when shaping stock large enough to accomplish the same purpose
kickback dogs across the full width of
21. Tenoners should be provided
the table should be provided
with hoods or other enclosures so arranged and
10. Portable circular Portable circu-
maintained as to guard effectively all cutting
lar saws should be provided with a hood that will
parts and saws
cover the saw teeth at all times except where the material is being cut
22. Wood heel turning machineWos od heel
turning machines should be provided with a
20
=~
guard or shield in front of the cutters except
so as to prevent undue acceleration Electric
while it is necessary to expose a part of the
dynamic braking for current and electric
cutter while turning stock
braking for alternating hoists may be
23. Stave jointers upper half of the
used to control the lowering speed
rotating head or disc carrying the knives of
Each brake should be capable of sustaining
stave jointers should be provided with a cover
one and half times the rated load
over the sides and front
geared hoists referred to in these
24. Veneer clipper or Veneer clip-
standards should have at least one electrically
pers or slicers should be provided with prong guards or shields both in front and back of the knife so arranged that the hands of the opera-
operated or mechanical brake On operated cranes with the cage
mounted on the bridge girders a foot brake to
tor and the man taking away cannot be caught
properly retard and stop the motion of the
bridge should be capable of retarding at the
G. CRANES AND HOISTS
rate of 1 foot per second while full load is being
carried
1. Overhead trolleys and monorails Every overhead trolley and every monorail crane should be constructed so as to prevent it leaving the track at any point except that where because of necessity for removal trolleys cannot be so constructed an additional guard rail should be installed which will prevent the trolley from falling if it leaves the tracks If removable sections are provided in the guard rail
e Lubrication Lubricating devices should
be arranged so that they can be reached without danger to the oiler They should also be arranged so that it is not necessary to remove any guards or other parts for lubrication
purposes
f Collector Collector wires should be guarded when they can be readily contacted
3. Crane footwalks sufficient headroom
they should be so arranged that they will drop
is available on operated cranes a footwalk
into place by gravity immediately upon release
should be provided on the drive side along the
after removal of trolley
entire length of the bridge of all cranes having
2. Cranes recommendations contained
the trolley running on the tops of the girders
herein should apply to driven overhead
To give sufficient access to the opposite side of
traveling cranes storage bridges gantry cranes
the trolley there should be provided either a
and portal cranes and modifications of these
footwalk mounted on the trolley a footwalk or
types which retain their fundamental features
platform in the building or a footwalk on the
he
a Bumpers bumper should be provided
opposite side of the crane at least twice the
as
at each end of the trolley It should be fastened
length of the trolley
to the bridge girder or if the rail is prevented
If possible footwalks should be located so as
RI
from sliding lengthwise it may be fastened to
to give a headroom of not less than 78 inches
8
the rail A bumper engaging the tread of the
Otherwise a headroom of not less than 48 inches
wheel should be of a height at least equal to the
may be used
radius of the wheel Bumpers engaging other parts of the crane are acceptable
If it is not possible to provide a headroom of
48 inches or more footwalks should be omitted
b Buffers there is more than one trolley on the same bridge girders buffers or cushioning devices should be provided If there is more than one crane on the same runway buff-
ers or cushioning devices should be provided
from the crane and a stationary platform built at the edge of the runway to be used by workmen when making repairs or else a landing stage built alongside the crane when repair
work is done
at both ends of the bridges
c Fenders trucks andand trolley
trucks should be equipped with fenders which
extend below the top of the rail and project in front of the truck wheels
4. Stairways overhead traveling crane operated from a cage should be provided with a stairway or fixed ladder between the cage and the crane footwalk and
between the cage and the floor
d Brakes independent hoisting unit of a crane should be equipped with two braking
Stairways should be equipped with rigid and
substantial metal handrails as described in Part
means except geared hoists the angle of whose worm is such as to prevent the load from
accelerating in the lowering direction One brake should be applied directly to the
motor shaft or some part of the reducing gear and may be either electrically operated or me-
chanical The other brake may be either me-
chanical or electrical If mechanical it should
lock the load when hoisting is stopped and should also control the speed during lowering
II B and should be at an angle of not more than 50 with the horizontal A suitable emergency exit should be provided where hazards justify such precautions
A warning signal such as a gong siren or bell should be provided on all traveling cranes
5. Crane Enclosures Indoor
cranes cage floor of every indoor over-
head traveling crane should be solid except that grating with openings not exceeding inch in
21
_
_
to the cornea and to the deeper structures of
the eye The eye must be regarded as the most exposed most easily injured most sensitive
and most valuable of the special sense organs It must be considered that the most minor
eye injury can most quickly develop the most
dangerous complications Removal of foreign
bodies under the lids should be done with ex-
treme care and removal of particles driven into the cornea transparent front of the eye should be done only by the plant physician if skilled in this work or by the eye specialist
B. ENVIRONMENTAL CONDITIONS AND
PERSONAL SERVICES
1. Control of atmospheric contaminants.a Workers shall not be exposed to concentrations of atmospheric contaminants hazardous
to health
maximum
The most recent values for maximum con-
centrations as recommended by the American Conference of Governmental Industrial Hy-
gienists shall be used as a guide in appraising
occupational health hazards and in evaluating
controls Maximum concentrations shall not be used
as the sole criterion for establishing evidence of hazard to health or being but the evaluation of a possible hazard shall also be subject to other pertinent factors such as the nature of the contaminant and the frequency and dura-
tion of exposure or clinical evidence of harmful
effects
b Control of atmospheric contaminants may be accomplished by any of the following
methods
i Substitution of a less toxic material for the material contaminating the workroom atmosphere
ii Exhaust ventilation so that the con-
taminant is removed from the workroom
atmosphere iii Isolation of the operation so that the
contaminant does not enter the general workroom atmosphere in hazardous concentrations provided that any worker who is exposed to a health hazard by entering the isolated area shall be furnished personal protection in accordance with the provisions of this code See sec 6 hereafter
iv Enclosure of the operation so that the
contaminant does not escape into the workroom
atmosphere in hazardous concentrations v Change the process or operating method
such as by wet methods the use of foams colloids etc. so that the hazard is controlled
vi Increase of general ventilation so that
the contaminant is diluted to a safe concen-
tration
c The most recent values for maximum concentrations as recommended by the American Conference of Governmental Industrial
Hygienists should be used as a guide in appraising occupational health hazards and in evaluating control Maximum concentrations should
not be used as the sole criterion for establish-
ing evidence of hazard to health or being but the evaluation of a possible hazard should also be subject to other pertinent factors such
as the nature of the contaminant and the fre-
quency and duration of the exposure or clinical
evidence of harmful effects The following are examples
MAXIMUM ALLOWABLE CONCENTRATIONS
Threshold
limit
values
adopted
April
1950
at
Chicago Ill Hygienists
American
Conference
of
Governmental
Industrial
GASES AND VAPORS Parts per million 1 percent 10,000 p m
Substance
P. m
Acetaldehyde 200
Acetic acid
10
Acetic anhydride
Aceton
...
5 500
Acrolein
0.5
Acrylonitrile
20
Ammonia
100
Amylacetate
Amyl alcohol
Aniline
one
* ee
Arsine benzol benzol eee eee
Benzene benzol *
Bromine
200 100
5 0.05
35 1
Butadiene Butanol
1,000 100
Butanone
250
Butyl acetate Butyl cellosolve Carbon dioxide
Carbon disulfide .
200 200
5,000
20
Carbon monoxide
100
Carbon tetrachloride
50
Substance
P.
Cellosolve Cellosolve acetate__
Chlorine
Chlorobutadiene Chloroform
200 100
1 25 100
nitropropane
Cyclohexane
_---
Cyclohexanol
Cyclohexanone
Cyclohexene
Cyclopropane propene Dichlorobenzene
Dichloro ethane Dichloropropane propyl-
ene dichloride ...__...-...-..
Dichlorotetrafluoroethane
Freon ---..--------.----
Dimethylaniline Dimethylsulfate
Dioxane
20 400 100 100 400 400
50 10
75
1,000
5 1 100
Ethyl acetate Ethyl alcohol
400 1,000
Recommended
Recommended lower
concentration but not specific value
Substance
P.
Ethyl benzene Ethyl bromide Ethyl chloride Ethylene chlorohydrin Ethylene dichloride _.__ Dichloroethane Ethyl-
ene oxide
200 200
1,000
-
5 75
100
Ethyl ether
Ethyl formate
Ethyl silicate
Formaldehyde one
Gasoline
Heptane
Hexa chloride en ee e ee
Hydrogen chloride
Hydrogen cyanide Hydrogen fluoride
Hydrogen selenide
Hydrogen sulfide
Iodine
__.
400 100 100
5 500 500 500
5 10
3 0.05
20 1
Isophorone
.
25
Mesityl oxide
50
GAS AND Continued
Substance
P. m
Substance
P. m
Methanol 2 ee
Methyl acetate
Methyl propanone pentanone . own ween
Monochlorobenzene
Monofluorotrichloro
Freon
.__---0..-.---
Mononitrotoluene-
Naphtha coal tar
Naphtha ( petrol. eum NicNikckeellNickel carbonyl carcarb bonyl onyl
Nitrobenzene Nitroethane
Nitrogen oxides other than
N
O
Nitroglycerin
o
Nitroglycerin
Nitromethane
Nitropropane
Octane
.
Ozone
Pentanee ee
200 200
200 75
1,000
1,000
200 500
1 1 100
25 0.5 100 50 500
1
1,000
Pentanone Methyl none _ 2-- anne ee
propa-
nen
ee ee
Phosgene
Phosphine
Phosphorus Trichloride
Propanol
Propene cyclopropane .
Propyl acetate Propylene dichloride dichloropropane iso-
Propyl ether
Stibine
Stoddard solvent
Styrene monomer
Sulfur chloride
Dichlorodifluoromethane
Freon Dichloroethane
Dichloroethane ethylene dichloride ._.....-....-.-.----
Dichloroethylene Dichloroethyl ether ..
200 1
0.05 0.5 400 400 200 75
500 0.1 500 200
1
1,000
100
200 15
Recommended lower concentration but not specific value
Substance
P.
Dichloromethane
500
Dichloromonofluoromethane
Freon 2.0. 22..0---------
Methyl bromide
Methyl butanone
Methyl cellosolve
Methyl cellosolve acetate__ acetate__
Methyl chloride
Methylcyclohexane
-
Methylcyclohexanol
Methycyclohexanone
Methyl formate
Methyl isobutyketone .
Sulfur dioxide
Tetrachloroethane Tetrachloroethylene Toluene
Toluidine
20
25 25
100
500 100 100 100 100
10 5
100 200
5
Trichloroethylene Turpentine .. eee Vinyl chloride Xylene
100 100 500 200
TOXIC DUSTS FUMES AND MISTS
Milligrams per cubic meter of air
Substance
Mo./cu.m Mo./cu.m
Antimony
eee eee nee eee eee eee 0.5
Arsenic
en eee eee eee eee eee nee eee 0.5
Barium. een nnn ee eee ee eee 0.5
Cadmium
0.1
Chlorodiphenyl
1
Chromic acid and chromates as C
O 0.3 1
Cyanide as CN
Dinitroc ---r --- --e ---ens neeeeeo ne el o
Dinitroto2l -2 =u en ne eencen eeee ene
Fluoride
22-2 ---- ween nnn cece ener en nee
Iron oxide fume 5+ ...
Lead __--- 22-7
==
ene
enn
nnn e nee
cere
ee eee
5 0.2 1.5 2.5 15 0.15
Magnesium oxide fume 15
Recommended lower concentration but not specific value
Substance
Mg./cu.m Mg./cu.m Mg./cu.m
Manganese
98822
Mercury
Pentachloronaphthalene 02.2.2
_.
-
eee
98822 98822
Pentachlorop eeeh eeee e annn e no el n 98822
Phosphorus yellow
98822
sooceee
pentachloride Phosphorus
GrHO T pentasulfide nena
Selenium.. . 0.1
Sulfuric acid
GrGHOHOT
Tellurium
0.1
Tetryl
Trichloronaphthalene ee_e Trinitrotoluen eee e seen
Zinc oxide fume
1.5 GrGHOHOT 1.5 GrGHOHOT
MINERAL DUSTS
Million particles per cubic foot of air
Substance
M. p
Alundum
eee neee nee eee eee eee
Asbees ee eeet eeeeeo eeee ees nee ener ee eee*. Carborundum
Dust nuisance no free silica * -------
Mica below 5 percent free silica
Portland cement
2-02-2222 een en nnn en ee eee
eee
Talc
oe
neee ee eee eee eee ee eee
ee
eee eee
p f 50 848 8 8 8488888 8488888 8488888 8488888 20
Recommended lower concentration but not specific value
Substance
M. p f
Silic*a
High above 50 percent free SiO2 .
Anggra
Medium 5 to 50 percent free SiO2 .
Anggra
Low below 5 percent free SiO 0.2.2.
Anggra
Slate below 5 percent free SiO __..-.-- ue
Anggra
Soapstone below 5 percent free SiO
Anggra
Total dust below 5 percent free SiO2 .
Anggra
RADIATIONS
Material or radiation
Radiant energy
Gamma milliroentgen per week .
ray milliroentgen per week ------....-..----Radon curies per cubic meter .
Thoron curies per cubic meter
300 300 10-8 10-8
10-8 curics 370 disintegrations per second -0.01 microgram
radium
New substances being studied
Asphalt fumes and dust Beryllium 0.005 cu.m
DDD
DDT
Ketene
eee
Monochloromonobromomethane
Values not established
Diethylene glycol Dipropylene glycol Ethylene glycol Propylene glycol Tricthylene glycol
2. Infectious Measures shall be provided to eliminate or control the transmission
of infectious diseases through processing or handling industrial products or wastes
3. General ventilation and temperature requirements Outside air shall be provided to all workrooms at the rate of 15 cubic feet
per minute per person or one and half air
changes per hour whichever is greater In most instances leakage through walls doors and windows will produce at least one and onehalf air changes per hour
b Air circulated in any workroom shall be supplied through air inlets arranged located
24
=
and equipped so that workers are not subjected
h Suitable air inlets shall be provided for
to air velocities exceeding 200 feet per minute replacement of air exhausted
except under special circumstances
i Exhaust systems handling dusts and dis-
c In appraising and controlling health haz- charging to the outer air shall be provided with
ards associated with extremes of temperature
suitable cleaning devices to remove air con-
and humidity the most recent report of the taminants prior to the discharge to the outer
Committee on Atmospheric Comfort of the In-
dustrial Hygiene Section of the American Public
air except under unusual circumstances 1 The discharge from any exhaust system
Health Association is suggested as a guide
shall be such that no air contamination there-
d A minimum air temperature of 60 F. should be maintained at all workrooms where
from will enter any window door or other opening of any work space in quantities suf-
work of a strenuous nature is performed and
ficient to create a health hazard to such space
a minimum air temperature of 65 F. should be or create a nuisance to surrounding areas
maintained in all other workrooms unless pro-
k Collected materials shall be removed at
hibited by process requirements
intervals frequent enough to insure that the ex-
e Air from any exhaust system handling
materials listed under section 1 paragraph c
shall not be recirculated unless the equipment is
haust system will meet the requirements of section 5 paragraph b at all times
1 Collected materials shall be disposed of
checked frequently to be certain that its opera-
tion is efficient at all times
in a manner which will not result in a nuisance or health hazard
e e 4. Local exhaust ventilation The air
5. Personal protective equipment Per-
velocity and rate of air flow as hereinafter
sonal protective equipment shall not be used in
required through a hood booth enclosure or
lieu of control measures specified in section 1
other point of ventilation and through the paragraph b except under unusual circum-
pipes shall be maintained at all times when the
stances where the use of such control measures
machine or process for which the ventilation is
is impracticable
applied is in operation or use
b Personal protective equipment and
b The effectiveness of every local exhaust
protective barriers shall be provided whenever
ventilation system shall be judged by
substances radiations or mechanical irritants
i The ability of the hoods booths or other
are encountered in a manner capable of causing
injury or impairment in function of any part
openings to produce a movement of air toward of the body through skin and mucous mem-
the opening sufficient to prevent escape of con-
brane absorption
taminant to the workroom beyond the limits
c Personal protective equipment shall be
shown in section 1 paragraph c
fitted to each exposed worker when the wearing
>
ii Air flow through branch and main ducts
of such equipment is necessary for worker pro-
shall be sufficient to transport the contaminant
tection and shall be maintained in an efficient
2
through the system without settling
and sanitary condition
c Piping shall be located so as to be acces-
d Workers who handle or are exposed to
sible for inspection and maintenance
harmful materials in such a manner that con-
d Air flow equipment including hoods
tact of work clothes with street clothes will
pipes fans motors and collectors shall be effec-
communicate to the latter the harmful sub-
tively grounded
stances accumulated during working hours
e Two or more operations involving more
should be provided with facilities which will
than one substance shall not be permitted to be
prevent this contact and also permit the free
connected to the same exhaust system when a
ventilation or drying of the work clothes while
combination of the substances removed may
they are not in use In any plant where it is
et
Melt constitute a fire hazard an explosion hazard or
necessary for both male and female employees
otherwise dangerous mixture
to change clothes separate dressing rooms Se
f Those processes or operations using or
should be provided
SIE
generating flammable dusts gases fumes
6. Eye protection protection should be
I OE
IMATE vapors mists fibers or other impurities shall
provided where persons are exposed to any
be completely protected from all sources of
hazard which may reasonably be expected to
MOE
ignition
cause injury to the eyes
AO.
g The capacity of an exhaust system shall
Such hazards are
be calculated on the basis of all hoods booths
a Relatively large flying particles There
and enclosures connected to the system being
are many operations and processes where this
open except where the system is so interlocked
hazard occurs Some of these are chipping
that only a portion of it can be operated at a
calking coarse grinding some riveting opera-
given time in which case the capacity should be
tions and sledging in quarries
calculated on the basis that all the hoods in the
b Dust and small flying particles There
group requiring the greatest volume rate of
are many operations and processes where this
exhaust are open
hazard occurs Some of these are scaling light
25
grinding stone dressing spot welding and some woodworking and working operations
c Splashing There are many op-
erations and processes where this hazard occurs
Some of these are babbitting casting of hot metal and dipping in hot metal baths
liquids.- d Injurious gases fumes and liquids.-
There are many operations and processes where this hazard occurs Some of these are encoun-
tered in the handling of acids and caustics
e Injurious radiant energy are many operations and processes where this haz-
ard occurs Some of these are electric arc
welding oxyacetylene and oxyhydrogen welding and cutting furnace tending and irradiation with ultraviolet light
should be provided for the disposal of used cups
Containers for drinking water from which the water must be dipped or poured should not be
allowed
2. Toilet facilities Every place of employ-
ment should be provided with adequate closets chemical closets or privies separate for each
sex in accordance with the following table in
which the number of persons is the maximum
number of each sex employed at any one time
on the premises for which facilities are fur-
nished
Number of persons 1 to 9 _
Minimum
Minimum
wee
number of
-23454
7. Noise Noise should be reduced or
eliminated as a means of preventing fatigue or
accidents
b Some appropriate means of noise reduc-
1 For each additional 30 persons
tion are
Urinals instead of water closets for male em-
i Sound absorbing partitions
ployees may be substituted in a ratio of not more
ii Segregation of the noisy process
than third urinals in the above minimum
iii Provision of appropriate ear stopples to facility schedule
employees affected 8. Lunchrooms rooms in which
employees may eat their lunches should be provided in plants where employees are exposed to
Where chemical closets are used they shall be of a type approved by the local health authority and maintained in a clean and sanitary condition at all times Janitor service should
harmful materials in the workrooms Such
be scheduled and frequent
rooms should be maintained in a clean and sani-
tary condition at all times and they should be ventilated illuminated and heated properly and
Privies should not be permitted where more than 25 people are employed and no privy should be permitted within 100 feet of any room
adequately
in which foodstuffs are stored or handled No.
9. Housekeeping All places of employ-
privy should be used unless it can be located
ment passageways storerooms service rooms
constructed and maintained without danger of
machinery equipment and supplies shall be kept
contaminating any sources of drinking water
vny in a clean and sanitary condition with all un- Construction installation and ventilation of
Pern
necessary dust spillage and debris removed at
toilet rooms and facilities shall conform to the
regular intervals frequent enough to maintain requirements of the local public health authority
Sores good housekeeping
b Where wet processes are used reasonable drainage shall be maintained and false
having jurisdiction
Waste receptacles with covers should be kept
in all toilet rooms They should be emptied at
floors platforms mats or other dry standing places shall be provided
c So far as possible sweeping and cleaning shall be done in such a manner as to avoid
the contamination of the air with dust during working hours
regular frequent intervals An adequate supply of toilet paper in proper
holders should be provided in each toilet room All toilets should have solid partitions separating them from workrooms They should be effectively separated and designated as to sex
C. SPECIAL SANITATION SERVICES
1. Drinking There should be provided in all places of employment a supply of potable clean cool safe drinking water ap-
and should be lighted and ventilated adequately Windows may be translucent but not trans-
parent
3. Washrooms place of employment
shall be provided with adequate washing facili
proved as to source and supply by the local
ties in the ratio of 1 lavatory or equivalent
authority having jurisdiction The common wash place for each 10 employees up to 100
drinking cup is prohibited
persons and 1 lavatory wash place for each
Drinking facilities readily accessible to all employees and of a type approved by the local
additional 15 persons Each lavatory wash
place shall be provided with soap and hot and
authority having jurisdiction shall be provided in the ratio of 1 facility for each 100
employees
cold running water
Individual clean towels of cloth or paper shall be provided Other apparatus for drying the
When individual drinking cups to be used only once are supplied a suitable container
hands shall be substituted only after approval
by the local health authority having jurisdiction
26