Document nowB6nXVK77k9qMwE065mx02
FILE NAME Armco ARM
DATE 1933 DOC ARM005
DOCUMENT DESCRIPTION Transactions of the National Safety Council
PLAINTIFF'S
EXHIBIT
! {
1933
TRANSACTIONS
National Safety
~~
. Council
,
Incorporated
TWENTY ANNUAL SAFETY CONGRESS
Chicago Illinois October 2 to October 6 1933
The Stevens Hotel
Copyright 1954 National Safety Council Inc.
ieShey siseae ELE
yeN<tn f R
be
ae f' $s} Ten ve
.
EXmieAAG
Ay
Day Cp orga Se -)
Reatba iety Che
i aac apy
Plan of Publication .
THE
TRANSACTIONS of the Twenty Congress of
National Council tunes
Safety
are published in wo vol
The
first smaller the containing General Su ject and
the Industrial
the General the
Industrial Section sessions is
a smaller
voluine
supplemented by
Hip away away Tralle
containing
Section
the
sessions
of
the
Street
and
S.if y
Section Education Section the Child Tralle
Child Education Education
and llome
ord
division papers of TheThe
session
each session or division
of the
Congress ,
breviate or delete
with care and discernment to ab-
edited sults
delete the the less essential portions portions and the
concise
and for
concise re-
presented complete
study and
reference Although sense that
not
readable intersting the intersing
every word is reproduced it is a
, interesting record which emphasizes
emphasizes
,
paparrttss of each
emphasizes the memorable
paper and
original manuscripts Council address on file in thethe
Council Library
The
available
are
Library as desired
available
for
aditional
additional
reference
k a)
ALTHOUGH National yn endeavors iminateTHE
Safety Council
from discussion at its
to eli-
which are
conventions matters +,
not pertinent to its purposes or which
are
san for the viewsviews
discusions
expressed either in the papers
discussions thercon
;
papers presented or the
i!
CONTENTS
'
Directors Council Officers and
be eeeneae sep eet eee
Council Purposes and Policies .....cccccccssaccee
Annual Meeting of Members
av
seeceneees
.
PAGE
wee testers vewneee
1
9
H
Banquet Dance and 21 0.0.0.0
vee
Subject Sessions
Accident Records peter
Dermatitis sce e eee ees .........- Peden
Dust Problem in Industry
: oe cette rrerace eee eeve te e es 23
eee eees vee
ceone
31
ne 37
Falls of Persons
45
Fire Prevention
51
Handling Materials
59
Hoisting eeenadee
63
Maintaining Interest in Safety
69
Practical Medical Program for Industry .
. 75
Industrial Nursing
83
Safety Equipment
seve 91
Safety Organization and Program Len eeeeee oseeeveese 107
Safe Use of Chemicals in Industry
Safe Use of Electricity in Industry .
The Eye and Its Relation to Safety
Mental Training for Safety ede
eee eacecet etter napenrees seccceoeee 141
Accident Prevention Equipment Manufacturers Section
Aeronautical Section 6... eee eee
e carte tenes
A. S. Engineering Section eee c cece cease
Automotive and Machine Shop Section
Section Cement
fevecernane
Chemical Section eee eeeaes
Construction Section
Delivery Taxicab and Bus Section
Electric Railway Section
Food Section
sees
Marine Section 0. eee Leather tb aveneeeceons
Meat Packing Tanning and Leather Industries
Metals
Section
tees enbaneeeeacceceeee
,
Ved eeweeerares wecese
307
Mining Section
bocce ereenetecececeneserens 325
Paper and Pulp Section
. 343
Section Petroleum
rene ......ccasceen
Quarry
Section
Section
Refrigeration
Section
vee
eeeenensennae saeees
Refrigeration Section Se een
Rubber Section Se eee ate e treme e ere e ne ccm mnea eer steeeens
Safety Section Steam Railroad Section NSC ee eenees
Textile
Section fa vererevecees ater t ener ecm nccaeenes
ee
Woodworking and Lumber Manufacturing Section etenes
Index cece
vee eee tb r der car e en ete e ater eneetecenee
439 479 . 485
x Twenty Congress Congress National Safety Conneil
A. Divast Safety Division Syracuse Chamber of
W. H. CAMERON National
Commerce ..
Safety Council
Romiar 1. CatTIN Actua Life Insurance Company Frank II Cocak Marine Section
Wirt Cearth Marshall Field & Company
A. Find Chair Safety Department Nashville Chamber
4. E. Celtisty Bethlehem Steel
of Commerce
Company
UPWARD DANA Boston Elevated Railway Railway
A. Dwinsex Dwinsex Consulting Consulting Engineer
LitLori Davis Monychis Safety Council ich H. Davis Blackstone Valley Safety Council
W. Dawt y Dawt y Refrigeration Section
Hartes D. Dawsox Grand Rapids Safety Council Ewig A. Blois Consulting Engineer
sy E Decker Mason City Safety Council
ames B. Douglas The Philadelphia Gas Works Company Dr. Louis 1. Dustin Metropolitan Life Insurance Company TEARLES H. Easies Textile Section
Tykky W. Ekins Meat Packing Tamming & Leather Industries Section D. Faxx~-lChicago Safety Council Ay A. Fisen Electric Railway Section
onaj^"A. Fiskn inerToledo Safety Commeil uoysFitzgehalp Western Pennsylvania Safety Council owand B. Foxna Burrouglis Wellcome & Co. U.S.A. Inc. B. Fortves Lehigh Valley Safety Council
G. GILSON Paper & Pulp Section
Thomas W. Gosling Child Education Section
riin M. Graves The General Cruslied Struc Company anny Guilfekt The Pullman Company
stan Hale The Atchison Topeka & Santa Fe Railway Company
T. Harmingtox United States Bureau of Mines T. Hehmutit Chicago North Shore & Milwaukee Railroad Company
LAS HILL New York Central Lines
stora G. HoiFSAs Street & Highway Traffic Section AUDE J Ding Albany Safety Council
1105 W. Howar Hulson County Safety Commeil
miny
D.
Tarsier
Pennsylvania
Department
of
Labor
&
Industry
Industry
D. James James Manufacturing Company
L. KESIS Power Press Section
T. Kriter Detroit Industrial Safety Council
V Kiser Pomsylvania Salt Manufacturing Manufacturing Company
315 W. Kluning Woodworking & Lumber Manufacturing Section
ANKLIN M. Krimi Evanston Safety Council . L. LaFountaise LaFountaise Great Northern Railway Company axaro C. Lax~-nKnoxville Safety Council
ink J. Lanaman Fort Pitt Malleable Iron Company
G. Lickitig Eastbay Safety Council
.
ru W. Luote Employees Publication Section
M. LITTLE New York Department of , Education
Officers and Directors
1. A. Lewiax Madison County Safety Council
Jons E. Long The Delaware & Hudson Railroad Corporation
W. Low Rubber Section
:
W. R. Linyo Safety Division Hirmingham Chamber of Commercz H. Manux Fisk Rubber Company W. MATSON Minnesota Safety Council Paxton Mendelssohn Detroit
Heway Mixeur Elizabeth Safety Council
W. 5. Morliening Ft Wayne Safety Council Council
K. B. Monty Industrial Accident Prevention Associations
M. J. McCarthy Automotive & Machine Shop Section Milter McClintock Harvard University II McKenney Minois Steel Company South Works W. Nerr Accident Prevention Equipment Manufacturers
Jons A. Oarty1 Carnegie Steel Company
A. Orr Detroit Edison Company
Lew R. PALMtest Equitable Life Assurance Striety Jos C. PARker Brooklyn Safety Council
M. Prater Public Utilities Section
Section
C. Paynoxe American American Manual Liability Liability Insurance Company R. Pow Seattle Traffic & Safety Comeil
*
ALBERT S. Regula Industrial Relations Counselors Inc.
Lt. Col. Hkxay A. Resinger Lehigh Portland Cement Company Maminus Ritfr Paterson Safety Council
JOHN ROACH Chemical Section
Charles 11. Ronosnx JR Baltimore Safety Council Tomas Kori Rochester Safety Council
Jonk Russell JR Newark Safety Council
Chas H. Ruru Delivery Taxical & Bus Section
G.
Saxiora General Electic Company
G. Schaftxer Erie Safety Council
1. A. SCHENDEL Food Section
Orto Schenk Wheeling Safety Council
11arny A. Schultz United States Steel Corporation .
Charles R. Scort Bureau of Safety Inc.
Lester D. Stystork American Airways Inc.
Base S. Shantzer Utica Safety Council .
Ges Jons H. Stemmurxe Massachusetts Safety Cuncil Dr. A. Shouny Bethlehem Steel Company E. L. Simonds Southern New England Telepluse Company Groute P. Sister Reading County Safety Comicil
E.
Lie Skeel Cleveland Safety Comicil C. W. Smith Standard Oil Company Company Indiana W. D. Sanri Delaware Safety Council
R. T. Solexstex Elliott Service Company .
W. Speight Peoria Safety Council
C. Sruing Lansdale Pa
George R. Stephens The Safety Bureau Buffalo Chamber of
Lucies S. Stowns United Railways & Electric Company *
noe
Commerce
=e
detect.
Act
. .
Pye
ow
oy
S
Twenty Congress
Safety Council
Alfred H. Swayne General Motors Corporation .
Arthur M. Tone Consulting Marine Engineer
W. W. Treven Schenectady Safety Commeil
W. D. Turneville San Antonin Safety Council
William F. Venen Rahway Safety Commeil
Vincent Wakefield Kansas City Safety Council
George H. Warfel Union Pacific Railroad
Dr. H. Watson American Telephone & Company
Hanry M. WeRBER Illinois Bell
Telegraph Company
S. E. WHITING Liberty Mutual Teleplione Company
W.
Insurance Company
W. WWhiintannesy UNnaitoinonaClarBbuirdeeau& oCfarCabsounalCtoyrp&orSautrieotny Underwriters
Dr. C.-E. A. WINSLOW Yale Medical School
Harry Wise SR Chattanooga Safety Council
M. Woltz Youngstown Sheet & Tube
W. E. Wourn International Harvester Company
F. J. Zauft Safety Bureau Duluth Company
J. B. Zook Cement Section
Chamber of Commerce
,
a
r.
of
o*
os
-
.
fn
op
s
LAr ty
3m
(i s a .
tS
v
:
& : Und)
;
f
aime
> 3
=
y
yt pf]
Cy
*
e
2
ao #4
.
b
A
Aaa
ae
ie
P
v
y,
;
A . ; q
oe
ey
'
ener
t
:
Be
Ronee
f
The life
nation
rectly
Tree ir
essent
Inse
condit
TINL the i indusi
merer
inclur Units nationi
Th tailexi under -
wauk
Yurk .. ships -
Thi
a
were a
Pemer
and t
prevent accide
examp
Sin leatli
Mulder
11 . cordes
celt
dveli
veltici
ing ru having
munity
-
facts accid
Since best s
a.
ee
i
ci .
cet clothes etc
ty in air uld be steriliza~-l from the hands he skin and openl
im plenty of such
-mning hot water
ls for cleansing ,
before mentioned
mal diseases and
Important occupa-
:
upossible because
ontinuous contact
complete listing
omplete chemical
w processES . .
istances that are
a irritating
a
known irritating
of .rk time of ex-
surfaces Make
free as possible
the worker with
~
thly cleaned and
H
.iet and keep it . i
|
- and laundered
.
;
Mill Company
:
:
vailable in com-
.
* Inads
ich worker has
|
.
d'equipntent d'equipntent bui *
.
thing into work
Laner who does
mpany time you
.
ill find that the
in efficiency will
will
f
.
TWENSECT OND SEY COND SECOND ANNUAL ANNUAL ANNUAL SAFETY SAFETY SAFETY CONGRESS
NATIONAL SAFETY COUNCIL
CONGRESS
: yee
.
Gy
Dust Problem in Industry
vost
.
EU- ws
FRIDAY MORNING SESSION
14
_
14
October 6 1933
The special session slevoted to a discussion of the dust problem in industry was called to order by J. R. Allan assistant manager Industrial Engineering and Construction Department International Harvester Company Chicago who presided He briefly outlined the purposes of the session and then presented the first speaker
The Mechanical Control of Dust .. *-_
,
:
By E. O. JONES
.
oan
O04 fee
Consultant National Founders Association Chicago
The speaker said in part During the last few years much has been written about
the pathological effects of dust From this material there seems to be
of
some lack
pathological types agreement among scientists as to the
*
effects of these
their dangerous dimensions the length of time one must be
of dust
exposed to their mhala-
of is dangerous tion the density concentration which
and the extent to which they .
are directly causative or contributory to disease
foundry confrmoendtiecdalbeptrowfeeesnsion willing the industry who unioruinate the legal ethics ethics harbored It is
that in the twilight
are certain members of
zone
and
and
are
advantage of these uncertainties and capitalize on them largely inr their
When
was
with the accusation that
own
it
there to take
benefit
health hazard took potential a
its leaders immediately
steps to study
problem
the eliciting the all with
object of
facts and determining upon
the the procedure to eliminate
causation This study has
under
a course of
been some time but its proeviure presents many difficult problweamys in some localities for
The mechanical control of dust is not our only problem nor does the
accomplish ment of such control depend upon large expenditures of money We know from
experience gradually human ingenuity will provide ways and means to this part
-
-
. 7
But let us digress from the subjret to consider the amount
dust we as indi-
viduals create molder of of
Take the
for
instance
who
goes
to
his
bench
at
the
He his day's work
reaches for his air hose and starts the
start
day with its force everything he can from his
by removing
equipment In close proximity to his bench
..
: ,
37
>
o
e
XN
;
3
?
xy
3
y
4
$B
HERS
3
t, 3
9
:
ee .
bee AD
very
YS
fe.
A
5
y
fe as 4
f
co
te
fj SOY
<
iS;
iy
4
"
te
:
f
$i
4) 5 r
ais ,
"1G te." gestys-
:
-, ze
i)
y
if Sy te
Pit ;
3
r Ty Ae
"
a
es
LB AA
G hfi bt
ee
a
fe Brett
+
} 8
b
7
f
ny: Cf be,
f
9
3
Aya!
Us
oD Sf
fats
FE
:
ot
.
. .
Ie
reves
eydere
nf
\
F
na 4
i
| Bl
wehe
aa
| n
: ; | Rs | if Re
itl
ae
(Ki
nm
Il
Me
afd
iM
ned ,
"%
t Me fy: 4
;
oh
38
Twenty National Safety Council
ve on
relies When take a
the window sill in front of him you will usually find He will usually wet down his samt pile but seldom
he is through with his shift he usually grabs the air compressed air bath
a varied collection of his flour or gangway hose and proceeds to
And we have the foundry laborer he has many menial tasks to perform When
judged he sweeps or uses a shovel he
by the atmosphere he creates
seems to be of the opinion that his If he does sprinkle the floor it is
efforts are usually done
very
sparingly
Shake men and crane men seemingly give little attention to the results of their
thoughtlessness Grab liickets are usually lited to the limit of their lift and then
lumped Many companies have furnished equipment such as positive pressure
helmets and respirators to ensployees who work in extremely dusty But it is surprising to note the apparent lack of interest on the part of ine whose protection this equipment is furnished
atmospheres the employer
From these remarks some may say Why shift the responsibility Not a bit We have merely cited these few facts as an indication that possilily we can improve the supervision If we make every man responsible for the cleanliness in the vicinity in which he works and every foreman responsible for his department and then in turn make the superintendent answer for the cleanliness of his shop we will not
have to worry about the increase in labor cost After dust gets into the atmosphere
it is of course very difficult and expensive to remove Keeping the foundry floor off the ceiling is a man job
.
Ventilation is problem everywhere A diligent survey of our existing emininent
nay develop the fact that by small expenditures we ran improve conditions Inspect your arresting equipment See that the rapping device is in order that the
screens are in good condition we suggest that they are rapped and the hoppers
emptied regularly Repair any leaks in pipes See that the valves close properly
Chutes should he kept in good repair and when emptying arrestors respirators sl~nulil be worn by the men whose duty it is to perform this work If reluse from the
arrestors is not removed at once keep it in containers or wet down until is re-
moved Above all watch your air velocities and make sure yini are removing at the source as much of the dust as the equipment was originally designed to do You
-
pay for the current the motor consumes to operate
get
the
proper
return
for
that
~
expenditure
your
suctions
equipment
therefore
equipment De ^fintsture or allow sand in accumulate around your blasting
Make
sure you are reviving the proper air changes in your sandblast rooms Inspect your masks the amount of air purging througit The wearer is prone many times to
just crack or partially open the valve and when this is done he is not getting the full protection for which the helmet was designed We suggest that the helmet be
rentoved from the sandblast rooms anil stored at the end of the day in a tight
cabinet instructing the wearer to clean before using
In your cleaning rooms where tumbling barrels are used we deal again with air
velocities Piping should be diligently inspected and kept in good repair Make sure
traps are performing the service they were designed for It might be well to keep floors in this department wet down Remove the day's accumulation of refuse at
the end of the day's rim When eyelones are useil make sure you are mit exhausting at the level of windows which may be opened in other parts of your plant
We will have to look for further operation from the foundry equipment manu-
facturers who serve our imlustry Equipment will have to be soldl us nut to
*~
Pre
Ny aa:
hee Pn oD 2
SEDs
teed
hed
3
-s: 3
rare
nae
*
ce . *
Re erenceom are
meet ex the egun regularis
designed
And w inuelr provided
equipmen Our in
For tlus is our de who have the actual
In the
it is impe
precaution upon the ni all kne
hope to a to employ
industry
How to
a
.Director .Director I
The inp disease has sunjeet has
extension u
inscreasing disability d eliminating
the dustine given dust
-
given quant font of air that is the
Many inst
and it may African inve pheric dust early as 19
AN SV":
2G
s ;
varied collection of this floor or
Kangway inse and proceeds to
1. to perform ' When
his efforts are judiza
is usually done very
very
in the results of their
* their lift and then as positive pressure
*
dusty atmospheres
part of the employee
sability Not a bit sibly we can intprove liness in the vicinity
rtment and then in
is shop we will not into the atmosphere ws the foundry floor
.
:
:
. i
conditions Inspect
in order that the
and the hoppers
lves close properly
respirators should -
li refuse from the koen until it is re-
" are removing at
esigned to do You
.,
quipment therefore
2 equipment Make
oms Inspect your
ne many times in
is not getting the hat the helmet he
in
day in a tight
cal
again
again with
air
repair Make sure be well to keep ition of refuse at
are not exhausting or plant
equipment mamit-
sold to us net to
-
j
:
.
:
a
.
i
;
iF,
;
Dust Problem in
Industry -
39
nicet existing cixles but as tight as human
the equipment is installed it will be the
ingenuity can design them After
regularly inspected and
purchaser's responsibility to see that it is
maintained to perform the service for winch it
designed -
was originally
maintained And we refer again in the employee's
a foundry lie should be willing to
responsibility When he elects to work in
provided by his employer and it wilclosbiejpetrhaetepuarncihlasweera'rs the safety devices which are
equipment is well cared for and
responsibility to see that the
Our industry is a hasie
properly
For this
one and we hope that it will long continue to be
reason we want to assure those who
essential
is our determination and hope that with
are sitting on the side lines that it
ae
who have given so
the help of those in the
generously of their time in scientific study we
medical
profession
the actual extent of the hazard
-
ran soon determine
In the meantime while
it is
that
many diverse opinions are being brought into
imperative we give more than passive
aereement
precaution or improvement The
assent to suggested measures of
upon the diligent and
accomplishment of worth while results
depends active operation of
of all
known
means of prevention
and
everyone control
concerned
and
the
utilization
hope to accomplish an effective
Only through united effort can we +
employers to
and
program which will give maximum of advantage
employees alike and industry will continue to dedicate its eatronesstuchanadn end we are confident the foundry
conscientious efforts
How to
Determine the Dust Content of the
Atmosphere in
Dusty Industries .
=.
.
,
.
Ge MS ak Director Industrial
e
By DR E. G. MEITER
Hygiene Laboratory Employers Mutual
_ Co. Milwaukee Wis
8
Liability
Insurance
curve The importance of
disease has long been atmospherie dust as an agent in the causation of
known However it is only within the last few
respiratory
subject has achieved medical and legal importance in
extension of compensation laws to
dusty industries
years that this Because n^ the
increasing number of
include necupational diseases and througli an
legal suits against industrial concerns
ever-
disability due to dust inhalation there is need for
by employees claiming
eliminating or otherwise
a severe attack on the problem of
combating the dust hazard the dustiness of the air
^ norder to intelligently control
the amount of dust present
given dust two factors are
must be determined With a
given
quantity
of
air
usually considered
which
1
the number of dust particles
in
is usually expressed in millions of
a
fnot of air 2 particle usually
particles per cubie
that is the percentage less than
expressed in a size frequency distribution
stated size is plotted against the size of particles
Instruments Used for
Determining Atmospheric Dusts
Many instruments have been deviseal for
it
be and may
well to give a brief
determining the dust concentration in air
African
historical review of this
subject investigators began using the
The South
pheric dust in 1911
sugar tube method for the sampling oni atunis-
Bureau the early as 1914.
same method was used by the U. By this method a
measured volume of the dust
of Mines as
air is passed through
.
.
.. .
.
ys t+
A
,
Kd
{i
--ye
I
i- $
I
i
^' 13
t
f
:
;
$
;
x
2
f
e,
%
ze
:
x
i
3
:
K.
4
RY
ir
ik
:
DATES 33
.
ars
;
3
ale Q *
F;
ff
4 i
Chico
ane
,
4
.
:
Ee
;
gh u
;
Ge
a
anes
ue
D
e!
\
TE
%
Sateen
(3 .
;
J
;
5
K
:
3
*
7)
-
vy
1 P 4 xf
Sus
bey & N
ay ){" CpXky
4
BS
$3
ferro ae yeh
C4
:
Zine
gi a
sy
iertee
tts
x
Ds
n
ed
aR Fy NSS YS f
40
Twenty Congress Safety Council
ripe
akive:
sh
ww oe Pe
a tube containing granulated sugar which filters out the suspeniel dust At the
laboratory the sugar is dissolved in water and the number of dust particles are deter
mined by counting those in small volume of the sugar solution under
This method of dust sampling had certain
a microscope
disadvantages the chief of which was the
fact that the purest commercial sugar contained a certain
introduced considerable
quantity of dust which
errors especially in those samples containing a low dust
concentration To overcome the limitations of the sugar tude method various otlier
devices were developed one of which was the Palmer
consisted essentially of a shaped glass bulb the lowearppeanrdatoufs whTihcihs taeprpmainraatteuds
in a tube or trap Suction was applied to the glass bulb by means of an electric
exhaust fan and the volume of air measured by means of a Petot tube Dust cis-
tilled water was put into the tube The air drawn through the
in
broke it up into a spray within the larger portion of the
water
the tran
sampling hull which washed
out and retained the dust The dust so obtained was analyzed by the usual methods
The Palmer apparatus also had certain disadvantages the chief of which was that its
eciencyas a dust catcher was low In the search for a more portable type of in-
strument which at the same time would yield rapid results the South African in-
vestigators introduced in 1916 a new instrument known as the Kotz^'konimeter The
ko imetersamples dust by impinging a small volume of air against the surface of
vaseline glass plate the vaseline serving to catch the dust
a
retained on the glass plate was then enunted under the
particles The dust
microsenpe at a suitable magnis
fication The chief disadvantages of the konimeter are that in atmospheres containing
a hich concentration of dust the spots are too dense to allow coimting the
particles and the method cant therefore not be aised in such cases also manyindsiavmipdlueasl
lind to be taken to secure a correct average determination in places where the dust
concentration was variable
A)
screen
light
eye a such +
It 10 lea maker by the
are
11 and
air ca 00C
will f perso indief that a
The outsiu
conter
Wiser ticles cul free cueda
As a result of the different methods of dust determination being used by the differ-
ll ent governmental bureaus and others it was soon found that the various samplin
ence methods did not yield absolute results consequently some confusion arose in inter-
ae ry m we preting the various dust studies In order to arrive at some liasis of comparisont the
U. Bureau of Mines conducted a laboratory study of sampling instruments
wer The results of this study were published in Public Health
instruments
Bulletin No. 144 entitled
Comparative Tests of Instruments for Determining Atmospherie Dusts 1925
ce During the course of this study two of the investigators Dr. L. Greenburg an
re
W. Smith devised a new apparatus called the impinger In the comparative strie
6.
8
the dust colleeting ethriency of the impinger was found to be hight and in addition
e
method- offered several advantages over previous methods After several
the
meee e tions to meet special requirements this instrument was adopted by the FederamlodPiufbilciac
}
Health Service and Bureau of Mines as the standard technique for the sampline of
ee dust in air The instrument has been used in the study of a number of dust
res and is the commonly accepted method in
trades
use today
ee
t
5.250
As know throu
merse
Th with
prines applia Whit
|
may gage
The a knc
TO
Size of Dust Particles Taken into the Lungs
cuhic
e It has been observed from a study of silicotic lungs that most of the dust
to th
that have pengirated into the air saes are less than 10 microns in
particles
fe
dutie
ee= ( micron is 1000th of a millimeter or 2500th of an inch It is lgoenngeersatlldyimaegnrseieodn
Alter
place
therefore that we need not bother with particles larger than 10 microns in
se the concentration of
measuring
WI
FS a dangerous dust
Nant So that you may visualize the size of these small particles consider a 280 mesh
clean 50 mi
s
Ry
a
aeay2
rte LORI TOT
'^' 4b vv eof, SITS AY
si
RAWLS
oR
perp ne 2
Y
4 ) Hare }
tate
<
;
;Tye
rN
ppTips ty ett
"
)
e
4.
Ve
ated ah $5063 TRY; Ret tstttos Tk
Conncil
Indled dust At the
particles are deter-
inider a microscope
- of which was the
tatity of dust which
staining a low dust ethod various other
s This apparatus of which terminated
maicans of an electric
tube Dust dis-
The water in the tran
*
Sulb which washed the usual methods 4 which was that its
portable type of inSouth African in-
l^'kontineter The
inst the surface of a
articles The dirst at suitable magni
pheres containing eting the individual
also many samples
wes where the dust
* ome, used by the differ-
-oussampling
eee
en arose in inter-
" of comparison the
pling instruments
meinm
* No. 144 entitled
oe
me :: Dusts ( 1925 rceree G reenburg anj
comparative sturly
Te
ind in addition the
r several modifica-
TA
the Federal Public
" th,, e sampling of
er of dust trades
the dust particles iongest dimension
s
generally agreed erons in measuring
sider a 280 niesh
OL
oP
vee
ey
|
Dust Problem in Industry +1
sereen in which the screen openings are 50 mictins
light an atmosphere
In the absence of
eye and therefore is containing these tiny partieles will apqwar clear to
extremely deceptive such particles directly visible
Only a powerful microscope
a beam of the naked can make
Fontent It is necessary therefore to make a
to learn how badly polluted it
microscopical examination of the atmosphere
may be Larger particles such as
naked eye are essentially harmless in the
are visible to the
causation of silicusis as these are caught
by the membranes provided by nature in the nasal and other
are eventually coughed up or eliminated before any damage irseqduoinraetory passages and
andWhen small dust particles are dispersed in air they are carried about like
settle out very slowly How long such particles will
smoke
air can be roughly determined from Stoke's law
remain suspended in quiet Assuming a round particle to be
one micron in diameter it can he calculafed by means of this
will fall only 203 feet in 24 hours It
law that such a particle
can be
persed into the air is
seen therefore that any fine dust dis
indefinite period
not only a momentary hazard but remains in the air for
This fact is often overlooked by workmen as it is
an
that as soon as the dust cloud is no longer visible all dust has
usually assumed
The term dusty working place is only a relative
settled out
outside of factories contains some dust
one Most air both inside and It is therefore necessary to adopt a standard
content for the dividing line between slightly dusty and dusty working
Wisconsin dust cole prescribes a tentative figure of 15
places The
ticles under 10 microns in longest dimensions with
million countable dust par-
a cubic foot of air
free silica content of 35 per cent in
filica
as determined by Publie Health Service teclmique Variations in
will make propertional inverse changes in this
cordance with this standard The permissible enunt for
standard In ac-
5.250,000 particles
practically pure silica would he
a
.
How Dust Samples are Collected
electrically As mentioned previously the instrument used in
known as the Impinger With this
enflecting the dust samples is that
through a glass tube and impinged
instrument the air to be sampled is drawn
at high velocity on a glass plate which is im
mersed beneath a suitable liquid contained in the collecting flask
The impineer therefore combines the principle of
with a washing or bubbling method
collecting dust by impinge^flnent
principles
The dust is tims
and so possesses the advantages of both
trapped and remains in the collecting liquid Suction is
applied to the impinger by means of a steam ejector
Where compressed air is not available a small
operated by compressed air
may be used The rate of air flow is measured either
vacuum pump
gage or an orifice flow meter
by means of a small vac~-m~-m
.
The entire apparatus is calibrated before
a known volume of air may be sampled
use against a standard gas meter so that
The rate of sampling is approxiniately one
euhic foot of'air of'air per minute to the
The collecting device is placed in close
breathing level of the workmen involved while
proximity
duties so that air samples representing actual
performing their respective
After a sufficient volume of laden air
working conditions may be obtained
placed in a suitable container and
has been sampled the collecting liquid is
When
the
dust
sample
removed reaches
to thethe talkoratory
for the necessary analysis
clean graduated flask through
the laboratory the entire sample is filtered into a
a niesli screen so that only partieles
smaller
50 microns are permitted to pass particles larger than 50 micronts
than
are not considered
= _vo <e
a Ze
s
BESte
he2ay
;
Pee
na
e ]
iy
-.
~ =. Se.
sows
=
i
i
. D
|
sae
ey
< :
.. Wat) 28
'
REY Beh: .
a3 ;
7
:
:
Aire
:
1 :
.
;
Se
+
*
,, .
=2
Ry}
58
| :
ex}
arate:
fF
Brats
x
.
ws
{
, ,
+2
Twenty Congress Safety Council
injurious and are therefore removed from the sample After proper dilution the contents of the graduated flask are thoroughly shaken so tlui a umform suspension je obtained and two portions of about one cubic centinicter are reinover with a pipette to just fill two Sedgwick counting cells The cells are allowed to stand at least 20 minutes and the dust particles are then counted by means of a
microscope
;
.
The microscope wife an Able condenser is provided with an eyepiece micrometer a millimeter objective and a 7.X eyepiece The eyepiece micrometer has a large squire engraved on it and this square is divided into 100 squares one of which is further divided into 25 smaller squares The proper tube length of the microsenpe is determined by calibration with a stage micrometer so that a sule of the large
square
of the eyepiece covers 1 millimeter 1,000 microns
the The large square of
eyepiece micrometer therefore encloses the dust in an
.
area of one square millimeter and since the counting cell is one millimeter
the dust suspenried in one enthie millimeter of the sample is under the ruled fideeldep Aallll
partieles visually less than 10 microns in longest diameter in one quarter of the field
are counted at five points on the cell maniely near the iour corners and the
center
Two cells of each dust sample are commited and the average of 10 enunts is obtained
Control counts are subtracted from the average sample counts giving finally average
net comits of the number of particles which are then calculated in terms of
per culic font of air sampled
particles
j^/inegal cofiposition Having determined the concentration of dust particles less than 10 microus in diam-
eter in given atmosphere it is also necessary to obtain information regarding the
of the dust before any evaluation of the health hazard can he
made
,
In general it may be said that the harmfulness of a quartz crntaining dust is
usually in direct proportion to its s^>licaSiO content It is therefore neces- a
sary to distinguish between free siliea that is the silica that occurs as quartz and
combined silica ue the silica that is combined with other elements in the various
silicate minerals It should be borne in mind therefore that the total silica
in the customary chemical analysis is no measure of the
reported
amount of free silica
The quartz content of fine dusts is usually determined by a combination
petrographic and chemical methods Each dust presents individual
of
individual technique applies to all dusts regardless of their compporsoibtlieomns aTnhdosneo
interested in this problem should consult Reprint No. 1560 of the Public Health Re-
ports February 24 1933 entitled The Quantitative Determination of Quartz ( free
silica in Dusts hv Adolph Knopi Professor of Physical Genlogy Yale
and Consultant United States Public Health Service
University
>.
Arig Peete
Arig Jeo.
Discussion of Dust Problems
By DR LEONARD GREENBURG
Yale University New Haven Conn
speaker ;
The
said in part On the technical side of this
.
presented with twis
problems you havehave been
Hast
:
excellent papers hy Mr. Joues and Dr. Meiter There is little
.
that { should add from this point of view Perhaps the most valuable
:
that I can make is to
contribution
9
:
present to you my own personal view of the broader adminis
r
'
trative aspects of this problemi gained as a result of
?
In
order
to
do
this
this
let
in
its
many years of close contact simplest
us analyze the problem in its simplest terms
i we
3
o
os
a:
3
3
4
=z
=f
xv
ry
we
*
>
4
Bat,
ca i A : if Lah si
Satyras
-
ry ey,
Lake
3
frye
:
says wae if PVT, 144,
Pata RLY
oN
Saris eRT Be
PRES fi MES
res
ee
.,
.
STEa
OL
Date
4 eve
SES ot
+
$
oe
9{ a
eitaete
ls
wer
.
Tee
TORO
ee
core
.
~
y
BS
J
ry
%
tee,
. :
ever La,
4;z. rf
" ~
ag
yf
2
Obed
oe
Ay
@] vat
?
ia 1) , Oy -45 BN
i
Rie Pt t be.
mincil
a
rs
proper dilutiom the + uniform suspension are removed with a
cells are allowed to
by means of a
vepiece micrometer ronicter has a large one of which is fursi the microscope is : of the large square
.
ince the dust in an millimeter deep all the ruled field All
quarter of the field rs and the center 20 counts is obtained
ving finally average
- in terms of partieles
in
liam-
10 microns in liammicrons
10
sation regarding the
alth hazard can he
containing
.
*
containing dust is
is therefore neces-
curs as quartz and sents in the various ental silica reporter ni free silica
of
alcontbination no
omposition Those
-
Public Health Re-
of Quartz free .> Yale University
-
jem
jem you have been
er There is little
duable contributions
The broader adminis-
es of close contact terms
-
Dust Problem in Industry
45
We may begin by agreeing that pulmonary fibrosis results from the inhalation
i
of certain dusts in known concentration concentration over a sufficient perival ni time This act
:
has been demonstrated repeatedly by means of industrial laboratory and pathological
!
studies On this simple fact take it there is complete agreement
:
Such legitimate cases of disabling pulmonary fibrosis are field in many states to
Is the res~-^/msibilityof the employer Further a perisal of the enmpensation laws
makes it evident that there exists a decided trend in the direction of broadening
the compensation acts throughout the Union for we find from time to time that
additional states are being added to the list of those holding silicosis to be a com-
i
pensable disease We would certainly he Islimding ourselves to the faeis were we
t
not to admit the existence of this trend in social legislation It should lie imited
out here that this is a very wholesome and desirable state of affairs The msurance
principle has justified its existence in spreading the burden of ill fortune over a
long period of freedom from catastrophie and surely in the ease of industrial accidents it has freed us from the deplorable state of affairs in existence prior to 1912. Int
the case of the occupational diseases we may hope for equally satisfactory results
Nevertheless compensation insurance is not the complete solution of the problem
at band
The mmily adequate means of avoiding the burden of silicosis is by the preven-
tion of this disease All other methods do not touch the crux of the problem and
carry if illness they
their wake a vast amount of litigation
and a large inancial
burden on industry If what we have agrevil upon to this point is true is ridivinis
H
that industry mntist prevent the dissemination of dust in the workrowing air by such
t
adequate engineering techniques as are available or in certain cases where this
ja~ inepossible industry est provide and force the worker to use sach means of
persimal protection as will adojinitely safeguard him against the minalation of dust
3
It is only hy these means that we can guarantee a ^>nture free of disaliling pulmonary
pulmonary
,
{
disease due to dust inhalation
a
:
In spite of the very best efforts of industry to solve this problem there will un-
doubtedly be a certain number of cases hrought to the emiris and presented as
:
legitimate cases of silicosis While some of these are true cases ni silicosis others
'
I have been informed are not but are designed merely as a means of uhtansing
consideration of such logically from A second funds
industry
us cases brings
to the
the What is part of
present discussion
What
the ideal method of handling compensation
:
cases with reference to occupational disease and more particularly silicosis
particularly
:
we examine the development of the compensation acts we find that a technique
designed primarily to adjudicate cases of industrial accidents has hy degrees been
i i
given jurisdiction over ocempational diseases In fact in some states diseases are
.
regarded as injuries so that they may be brought within the scope of the original
.
emmpensation acts But on close examination it becomes apparent that diseases are
far more difficult to adjudicate than are the ordinary injuries arising in industry
They present many teclusical facets and often require a detailed knowledge of this
particular branch of medicine with which the average commissioner is very often
unfamiliar As result we find in practice that the Court is presented with highly
jechnical evidence by experts for the plaintiff and for the defendant which is very
difficult if not impossible to satisfactorily evaluate Often the commissioner is caught
between the conflicting views of such witnesses and is not provided with his own
1
experts to aid him in arriving at the real scientific background of the problem at
! hand .
kaa
|
.
.
'
: Ny
;
3
2
G
o
9
J
tee cs 3) Chae:
G
-
4 L,
42 x
Ky asians
/
.
A
Bg J
. f:
z
.
+ se
2 es
>
te4 cA
= ne Y
Me ies
4 ANE,
a
:
. iS
23
Bi
}
:
J
4
;
Aa) oe igh
5
o
ot owe
P
Par, ww ee;
re
Ia
1]
mw
Tas
.
ed
oe. . > e ternd Vm.oe o oe PAL,nae=swe pe L8, > :
ye.
pod
peeve Yi
CIE
aes
we
Vi 3
oat
hati
Pa
J
r t
'
:
|
teny. \ '
is A
OF
al
aks ht 1%
ave :;
oe i ; !
!
cag : eat
wees koh
'
*
:
fre
oefrei
:
:
>)
:
H MS
Me SAA
!
a ye ;
;
;
f
{
,
i)
y
nes ft ;
x ff+32%
2
!
!
ee 9 ,
tes
ft
H
Pen Mie
t
3 :
bh Tava
:
.
Sy
|:
Peeg
pal
4
:
pees
|
4
i
ea
|.
3
:
44
.
Twenty-second Conyress NutionalCouncil Couneil
What Twenty Twenty second Congress Congress
Acts ty keep pace witt: dite Congress National Safety Council stde of
What really need a
strengthening the
teclinical of
compensation compensation
to
strengthening strengthening understanding understanding understanding
compensation compensation occupational
pace the increased the
regarding regarding occupational occupational with
diseases
This
cines accurately
worded
compensation
themselves compensation
but
should
define
west
the
the promulgation promulgation accurately accurately
compensation which
the
worded pair Compensation Compensation
commissioners short!
diseases for which compensation
assisted assisted
technical experts composed of
commissioners the hy the
hearts engineering schools and
engineers appointed deans deans
deans various various engineering The physicians appointed appointed very
deans
the recognized recognized medical schools conditions conditions th engineee rs engineevrsensteillecatteidonselected should physiciane physiccioanin-e cpohnyis-iccioamne e
ventilation
plete knowledge knowledge of factory field
should
industrial hygiene and
occupational It Te as
only
such specialized specialized specialized boards boards
occupational occupational equivalents the the
compensation commissioners commissioners may be be able do complete their equivalents both sides in
compensation compensation technical
complete that employers
as
cases establishment these highly alike would benefit
the belief
speaker use and em- en.
ployees alike hasten
greatly the establishment establishment
such such boards .
establishment establishment establishment this system system
employers justified ap- it
pealing their legislatures legislatures this end in
employers legitimate legitimate demand Ap-
receive the hearty hearty support
certainly .
should Frequently Frequently one is
all concerned concerned those claims
demand
on little
asked should should done done worker
which are based hase
no evidence injury the
which are merely reared
by very enterprising enterprising enterprising attorney
claims I have been told becoMNES
reared
very common and constitute
Such Such problem industry industry alivious alivious
becoMNES
the compensation compensation
suggested earlier as soon
that that
serve the
advisory advisory boards suggested against type
as they are formed formed
future a healthy hulwark cases
of baseless baseless and
venture venture predict predict that few
would favorably favorably upon suelt cases present time factory officials
by
board |
employ the the
of real experts this field the
very best
should reinforce
employ reclinical the
talent available versed the
legal talent with cases
:
and medical medical experts experts thoroughly thoroughly to bear
the field siliensis siliensis required have
been fost failure a bring
the requisite technical required
prove hare
Here is an the existence existence existence a the end hy increased excellent
example
case which which
a a case whieh
money may be saved in final
expenditures
We arrive at
steps in the control this this
the worker Every factory shunild problem employment employment aed
ray examinations It seems oliviens
have health
routine pist examinations examinations placed on the
that the burden the pre employment
and
worker How can
plant without the privilege hire
employment tie
examination examination examination examination
industry be legitimately
worker
worker
the blind
his her physical condition and then expected be expected expected shoulder shoulder the
burden his worker's health
physical physical examinations examinations examinations possible
ta burden discern faint early deviations By repeated physical take . possible
manner manner employer
from normal health any
In this
manner
would be forewarned routine
workmen workmen showed lung lung
suggestive suggestive early silicosis The
industrial industrial industrial health examination
3 changes br^dd throughout the
routine American industry
on
a public health procedure procedure major portion significance American
constitute ON
significance means tiun tion of
major
population would would aided in
such
prevention prevention
large propher
the degenerative degenerative degenerative
diseases
of middle middle life today constitutes
menace menace the
degenerative tliseases such 9 real ADJOURNMENT
. .
ADJOURNMENT .
;
:
, :
ry
-
be
ey
.
i
per
er
;
Ch:
8
7
.
:
' -
: !
{
'
.
.
'
.
oly
!
oO
,
. 6
;
Mee.
1 Ales
t
Inay
thas.
era
be
grain
wane
or |.
gra
run; T..
likew the +
Nor *
: the
Mu
:
Ma. ladder
to
to . have :
the te
'
.
a
a
tats
PET REIS og a
3 hn)
if x
ue sf
;
v
"
33 :
;
*
ye i> ETE
*
ix rf
4 a
a ,
rete Pt
x
HY dy tat: ;
Raat ie
.
%
;
rg
ri ;
R ;
Y
nhs
hae ra,
Seon
ies
ES
. .
:
'
<5
Pa.
4 0
sively that the
2. would stimusety T^>mitest on each year in sm the past ning
improvement in
by five deaths
rcentage basis
Lance compares cident experirs ago the rub-
was true but sa the National v able to prove
best in severity ninth best in
commitry The than the rubber
industries al cost figures xperience ni a
rublier goods te that during ut did not iresafety program My committ.es
ulvisory comand pending
ost was reduced And this was a .st of factories
* textile mills
in 1931 2 and
er to get divie
Inst the man-
17th more than vnt prevention
' coming down that he broke inctory that I
Ling or leaving
e
~
ey
ee
TWENTY TWENTY
SECOND ANNUAL
SAFETY SAFETY CONGRESS CONGRESS
NATIONAL SAFETY
COUNCIL
et
Se
aee Safety Section A.R.A.
Railroad Section N.S.C.
Officers 1932-33
Charles F. Hill New York Central Lines New York
First Chairman I_ LAFountaing Great
City
Minn
Northern Railway Co. St. Paul
.
o SeCchoincdagVicoe Chairman A. Pautsti Chicago & North Western Railway Co.
Secretary C. Caviston American Railway Assn New York
Members Committee of Direction
City
.
F. Hartenstein Lehigh Valley Railroad
:)
H. A. Rowe Delaware Lackawanna
Bethlehem Pa
:)
N. Woodwand New York New & Western Railroad Co. New York City
Comm
Haven & Hartford Railroad New Haven
a Ronent Scott Atlantic Coast Lines Railroad
.
O.
Beck
Canadian
National
Railway
Co. Wilmington Montreal
N.
C.
W. Cuntis Denver & Rio Grande Western
Q. Canada
G.
Evans
Louisville
&
Nashville
Railway
Railroad Denver
Louisville
F. Lausox Missouri Pacific Railroad St.
Ky
F. M. Metcalfe Northern Pacific
Louis
Se J. T. Pratt Rearling Co. RearlingRaPialway .Co. St. Paul Minn
a
me The complete report of these sessions is
of the 13th Annual Meeting of the
published in a booklet entitled Proceedings
Railway Association
Safety Section available from the merican
ee
em
TUESDAY MORNING SESSION
October 3 1933
me The sessions of the Safety Section American
road Section National Safety Commeil
Railway Association Rail
with the Annual Congress of
were held as a part of and in conjunction
+
the National Safety Council in the Stevens
lintel
~
439
es Dy
wos ew
esl,
A
re
Cee
OPO,
:
~
1
:
kF
ote
'
{
Hee
fa
Cah)
oe
7 pie
tes Ly
|;
i3 |
j
14
.
i
;
a
: | { entre
Vv. i
3
.
r e
oi
<
.
7
Spare ran
tae
RE
7
4
: 43
V
Vv4 ETN t C RayUN Mee ra WY:Wt TSerSy
3
tn
:
LR
?
cS
YEH
^'
Hi
[7 fad
5
$,
~
rha: SF
ras ie }
r
:
;
RS
My
4
de Ly
85)
aA!
*
:
ef
Vf,
ay):
AT One's
72
,
Ue Ad
Q
wahoo
WEG
bg)
if want a. 2 ree
Hick uy 3
ors
8
te
le
ri
ciaRet: ane
Nzcoro ews
renteae ve vyee by HN,oy t
8
prota
3.
. PX
:
Sse I
5%
Z
=p
Oty 2. v3 ne
oe
fs
- -
ie+. eure
wem ems
ts mt ome ,
\d
pBiesl, Trvasie ,
e avid Ses
:
ge
re me
2
oo
cae
oe
arenaHeh}oe
3 *
oR,
OO ~
wyy nS,teow SOd
bat boier kas toeas +2 ~
t e-.
Cn mh ob . ee =
444
Twenty Congress Safety Council
TUESDAY AFTERNOON SESSION
October 3 1933
Address
.
By FREDERICK E. WILLIAMSON
President New York Central Lines New York City
The speaker said in part I got my first lesson in safety in a very trying way I was working in Utica and the yard was harly congested was working with a switch engine in the lower part of the yard and it was showing hard I was on top of a string of cars and I was trying to figure out how to get them out I swung down on a side ladder with my mind wholly intent on what I was trying to accomplish and stepped back on track No. there was a screech of a whistle and here suddenly was No. 3's engine about 50 feet away or so it seemed to me Instinctively I made a dive between this string of cars that was pulling out and I could just feel that pilot beam whistle by me and the engineer thought he had hit me He stopped and cante hack to find that I was all right but certainly I got a
safety lesson from him in no uncertain words So I learned my first safety lesson by a shock and a scare
Today however
we have adopted another principle Now we are trying to teach the young men
safety by rules by education rather than by letting them learn and narrow escapes that safety is essential
You and the affiliated safety bureaus of the several railroads
through experience
.
have taught us to
miderstand that while you can't undo accidents that have happened you can see
to it that no accident that does happen will be considered a closed bank mutil there
is a thorough analysis of its cause with a view to the avoidance wherever possible
of that same cause of succeeding accidents
As we review the official records of the Interstate Commerce Commission we
note with pride the progress of the American railroad in the reduction of accidents and all who are familiar with the subject recognize the large contribution of the
Safety Section of the Association in that noteworthy achievement
One of my distinguished predecessors in the presidency of the New York Central
Lines was fond of saying that a railroad is composed of plant and personnel and
that personmel represents 20 per cent of its value Much of the success of your
*
work is dependent upon a recognition of the large importance in safe railroading of the called Inman element You must consider and deal with a mental ap-
prnach of ollicers and employees to all safety work It is nut enough that the physical plauts be cleared of lurking hazards nor is it enoughs that instructions as to the sale methods of operation be promulgated Both of these things of course
are vital Of equal importance perhaps of larger importance is the molding of mental attitude toward safety movements and toward safety itself The number of accidents that are utterly unavoidable is surprisingly small Everything that is done
to impress on all the frightful cost of accidents in life linib and money is yenman~-
service We must eternally seek to instill in the minds of all a serious respect for safety measures and a dogged determination to do cach one his job not only well but safely Your section is now as it has been from its inception in the vanguard of that movement and it is but candid that I say to you that railroad executives
generally congratulate and honor you for what you have done and are doing
se START 2 ia[zs
ek
ane
we
mn
ee
emi.eee
-
ee
mre 8 oe e
te
om
ee
on
et
ine
ee
en,
Ae