Document DM8ywNoaM54rwzNexD6bbEq8Q
FILE NAME: Kohler (KOH) DATE: 1935 DOC#: KOHOIO DOCUMENT DESCRIPTION: Metals Section - American Ceramic Society
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Metals Section
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<2 Officers 1935-36
General, Chairman--H. W. Darb, Bethlehem Steel Cp., Johnstown, Pa.
*Vice-Chairman--A. Berqtjist, The Youngstown Sheet and Tube Co., East Chicago, Ind.
Vice-Chairman--C. M. Alle, The American f ilin g Mill Co.,' Middletown, Ohio;
Vice-Chairman- (In Charge of Health)--Br. R C. Engel, 'Corrigan-McKinney Div.,
Republic Steel Corp., Cleveland, Ohio.
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.Secretary and News Letter Editor--R. A. Chaffin, Continental Steel Corp., Kokomo; Ind. '
. Contest Committee Chairman--RoBEST L. S chmitt, Louisville Car Wheel and Railway
Supply ,,Co., Louisville; Ky.
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Engineering Committee, Chairman--].(YL. Culliney, Bethlehem Steel Go.,' Bethlehem, Pa. '
Foundry Committee Chairman--Irwin A. Brinkman, Mackintosh, Hemphill Co., Pitts-.
burgh, Pa.
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Membership Committee Chairman--Mell E. Trammell, Gulf StatessSteel Co., Alabama
City, Ala.
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Poster. Committee Chairman--R. H. Ferguson, Republic-Steel Corp., Cleveland; Ohio. @
Program Committee'Chairman--H. M. C rock a n , Inland Steel Co., East Chicago, Ind.
PublicitycCommittee Chairman^-C. W. Hanko, 'Pittsburgh Steel Co., Monessen, Pa.
Railway Car BuildcrjrCommitlee Chairman-??. J. Brand, Pullman. Standard Car Manu facturing Ccrp.^PulIman, Chicago, 111.
Slides and Safety Kinks Committee Chairman--J. A. Oartel, Carnegie-Illihois Steel Corp.,.
Pittsburgh,'Pa.
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Statistics Committee Chairmaii-^N. J. Ireland, Kohler Co., Kohler, Wis. --,
C Members at Large-- .
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F. G. Bennett, The Buckeye Steel .Castings Co., Columbus, Ohio.
E. R. Blank, Jones & LSUghlin Steel'Corp., Pittsburgh. Pa. . <T
J. A. Coltrin, National Radiator Corp., Johnstown, Pa.
G. A. Davis, Carnegie-Illinois Steel Corp., Chicago, III.
M. W. DundRe,^Beloit Iron Works Co.; Beloit, l/VIs, "
John P. Eib, Carnegie-Illinois Steel Corp., Joliet; III.
w. T. Filmer, The Youngstown Sh# and Tube Co., Youngstown, Ohio. .
A C, Gibson, Spang. Chalfanfr& Co., Inc., Pittsburgh, Pa. v
O. F. H arvey, American Car and Foundry Co., New York, N. Y.
S. .E.- Hawkes, MacWhyte Co., Kenosha, -Wis.
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H. H. Henry, Otis S tai Co., Cleveland, Ohio.
H. G. Hensel, The? Youngstown Sheet and Tube Co., Chicago, II).
W. A, Jarvis, The Chase Companies, Waterbury, Conn.
F; A Lauerman, Republic Bteel Corp.'; South Chicago, III.
T. H. McKenney, Chicago, lit. s'
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D. V. Medalie, Interlpke iron Corp.,`Chicago, III.
John O'Rourh, Bethlehem Steel Co,, Sparrows Point Md.
C.' E. Ralston;' Pittsburgh Plate Glass C., Pittsburgh, Pa.
Frank Rowe, wheeling Steel Corp., Portsmouth, Ohio. "
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Herman Spoerer,- The Youngstown Sheet and Tube Co., Evanston, 111.
J. K. Stafford, Mississippi Valley -StructuralJiteel Co., Decathr,- III.
I*, ,Dec-Jea;seAd.." Vo_qss, Republic Steel Corp.', C<Vleveland, Oohio. ' ' *'
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Twenty-fifth National Safety Congress
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Officers Elected for 1936-37
t General Chairman--C. M. Allen, Th American Roiling Mill Go., Middletown, O.
Vice-Chairman--R'. A, Chaffin, Continental Steel Corp., Kokomo, Ind.
Secretary and News Letter Editor--Mell E. Trammell, Gulf States -Steel Co., Alabama,
City, A lt
Contest Committee. Chairman--Rodert L. Schmitt, Louiiville Car Wheel and Railway
Supply Co., Loisvllie, Ky. o '
Engineering Committee Chairman--R. H. Fekouson, Republic Steel Corp., Cleveland, 0 .
Fomidry Committee - Chairman--Irvin. A. Brinkman, Macklntoih-Hemphill Co., Pltts-
burgh, Pa.
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Health Committee Chairman--Dr, R, C. Engel, Republic Steel Corp,, Cleveland, O.
Membership Committee Chairman--H. J. Griffith, Jones & Laughlin Steel Corp., Pitts
burgh, Pa.-
Poster Committee Chairman--H. B. Henry, Otis Steel Co., Cleveland.
Program Committee Chairman--C. W. Hanko, Pittsburgh Steel Co.,. Monessen. Fa.
Ptiblicity Committee Chairman--C. E. Ralston, Pittsburgh Plate Glass Co., Pittsburgh, Pa.
Railway Car Builders Comnitttee Chairman--P. J. Brand, Pullman. Standard Car Manu
facturing Corp., Pullman, Chicago.
Slides and Safety Riniti Committee Chairman--J. A. Oartbl, Carnegie-Iilinois Steel Co.,
Pittsburgh, Pa.
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Statistics Committee Chairman--W. T. Filmer. The Youngstown Sheet and Tube Co.,
. Youngstown; Ohio.
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Members at Large--r
F. G. Bennett, The Buckeye Steel Castings Co., Columbus, O. R. A. Beyer, Central. Tube Co., Ambridg, Pa. c; A. Bianchi, H. H. .Robertson Co., Ambridge, Pa. E. F. Blank, Jones & Laughlin Steel Corp., Pittsburgh, Pa: J. A. Coltrin, National Radiator Corp., Johnstown, Pa. C. S. Craigmile, Beiden Manufacturing Co., Chicago, 111. . H. M. Croghan, Inland Steel Co., East Chicago, Ind. J-.. Culliney, Bethlehem Steel Co, Bethlehem, Pa. .. H. W. Darr, Bethlehem Steel Co, Johnstown, Pa. M. W. D ondore, Beloit Iron Works Co, Beloit, Wis. B. T. Dye, Republic Steel Corp, Warren, O. John P. Eib, Carnegie-Iilinois Steel Corp, Joliet, 111. E. A. Ellis, Wheeling Steel Corp, Wheeling, W. Va. J. P. Gatherum, Great Lakes Steel Corp, Ecorse, Mich. A. C. Gibson, Spang Chalfant Co, Inc., Pittsburgh, Pa. O. F. H arvey, American .Car and. Foundry Co, New York, N. Y. S. E. H awkes, Macwhyte Company, Kenosha, Wis. H. G. Hensel, The Youngstown Sheet and Tube Co, Chicago, 111. W. A. Jarvis, Chase Brass & Copper Co, Waterbury, Conn. ~F. A. Lauerman, Republic Steel Corp, Chicago, 111. T. H. McKenney (retired); Carnegie-Iilinois Steel Co, Chicago, III. D. V. Medalie, 'Interlake Iron-Corp, Chicago, 111. J ohn O 'Rourk, Bethlehem Steel. Co, Sparrows Point, Md. C S. Phillips, Revere Copper & Brass, Inc., Rome, N. Y. -, Frank Rowe, Wheeling Steel Corp., Portsmouth, O. . A. C. Schultz, Bucynts-Erie Co, So. Milwaukee, Wis. H. T. Spoerer, The Youngstown Sheet and Tube Co;, East Chicago, Ind., E. J. Sterner, Bethlehem Steel Co,1 Bethlehem, Pa. J. A. Voss, Republic Steel Corp, Cleveland, O.
MONDAY.. AFTERNOON SESSION October 5, 1936 '
The opening session was called to or der by General Chairman H. W. Barr,
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Bethlehem Steel Co, Johnstown, P a, who presided. Chairman Darr welcomed
the delegates, pointed to the. excellent year, and commended, the Various com-
progress made by the Section during the' mittees on"1their work; ^
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Industrial Relations and A ccid en t Prevention '*
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By J. A .'VOSS
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Director o f Industrial Relations, Republic Steel Corporation, Cleveland, 'Ohio :
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Industrial relations of the right kind presents to keep safety and accident pre-
are essential to the success, f business. Mention constantly before the worker..
Men are rio longer regarded as commodi- Safety deseryes a place of importance in'
ties, to be .purchased a t the lowest pos- the .industrial relations program because
sible rate ahd^discharged when no longer of 0the good , will it engenders among a
needed. Employees must be as contented> workers. *
as ambitious men canj>e; deserving ones Through a constructive, well designed
must have opportunities,for advancement; vaccident prevention program the' manage-^, a
wages, hours, and wWking * conditions ment can get closer to the men and atT
m ust'be favorable. There must be a h ' thetsame time bring^tehi more real good
earnest;-sincefe effort to work with men, than throgh any other,, single medium.
>to appreciate their'needs,and as far as Such a.program has one great advantage,
possible, to meet them.
O Whether it's the president of the com- '
As intelligent labor relations are essen- gany or the newest laborer on the pay-
tial to modern industrial management, so-' roll, there is a unanimity of opinion about
intelligent safety work is essential to a , the' value of safety. &
worth while industrial relations program. A found safety program also .provides,
-The Employee Representation Plan, through proper organization, a logical
which has proved so. successful during system of liaison 1between management past years, is an excellent medium for and ...men. .The safety man, who should
carrying out both programs..^
be, and frequently is, an integral part of.
This plap, .with its representatives the industrial relations program, njeets . . '
elected directly.by-the men from among with the- superintendents. The superin-
their fellow-workers, gives' employees and tendents, in turn, pass on the informa-
management . every., opportunity .to meet tion thejQhave gained to the foremen,
together and discuss all phases of indus- Finally, the foremenhoId meetings.. di-
trial relations, which should include a dis- rectly with the men working under them, cy
cussion of unsafe practices andenditiorts. This ..completes .a chain that can, as need cv By holding regular meetings, these prob-' manifests itself, be used to; pass along
lems are promptly settled'before? serious other information7with equal effectiveness, misunderstandings develop and. accidents Such a. relationship is invaluable, It
occur. The safety.man has an outstpd- -should4be fostered and developed, for in
ing .opportunity, to carry bn his work in . this relationship will frequently lie the vj.
cooperation with a safety-committee from;> methods which will place a restraining* .
among the representatives. *
hand on trouble and djscord.
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That safety , and welfare represent,, an Ip our corporation the safety depart-0
important part of the discussions between = ment is a part of th industrial relations
men and management under this plan is department. The office, of the safety man-
indicated by. .the fact that ..during 1?35 ' ager adjoins ifiy office, andlhe is familiar
mre than '25 per cfit of all the cases 4with the questions and problems which ..
handled by the representatives in our f, confront us in', carrying out the broad
corporation dealt with .these "subjects. & program of industrial; relations. r>
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No safety program is'reaiiy effective if Safety, to .us; is- distinctly a sales job,
it fails to use the many opportunities that judiciously-mixed with a bit of crusading
an enlightened industrial relations pofiby spirit. ' i
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Jjujenty-fifth Rational Safety Congress
There can be no laying down on the mass trouble and tribulations. The in
' job--no hoping that the lesson has soaked- dustrial relations r safety man who is
through perthanently. New men are be- -' too indolent to mingle with his men to
ingf hired whosfnust be taught/and, being learn to know-them at first-hand is. going
human, older men too frequently get' to fail at his job.
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careless and "forget. . So we use a dot of As you get to know the men better, selling, backed up with "-advertising and so they in turn'get to know, you better.
combined with a dash of sales promotion. A mutual respect and regard is developed
It 'is' in connection with',this constant which is helpful on both sides when prob
selling job that the employee Representa lem s of mutual interest are being dis tion Plan is most effective. Among the cussed. You will both be more holiest
representatives are men from every de with ea'ch other. There will be less, beat
partment. The very1fact that they are ing around the bush and more plain facta. representatives is proof, that they . are If demands are being made that are
leaders, that the men listen to and respect unreasonable, it has. been my experience them and their ju d g m e n t.!^ therefore^ .that the bi'st method to use is frankness.
.we can sell the representatives on the" Tell the representatives all there is to value of safety, we .have' a number of know about the company's financial con influential proponents who rare unofficial dition, its sales problems, its costs of op-
safety representatives, and whose efforts/- cration, and market conditions. Discuss
-.supplement the instruction which has with them the accident record. If you are
been passed down through the superin honest, and they will know whether you
tendents and foremen.
are or not,* you will find) that they are
These representatives, whose duty it is not only reasonable but sympathetic with to be-, interested in everything that affects', the company's problems.
the welf_ a__ r_e_ of athLe:*ir constituents, ___________________a- will,' ____Til *V nTPhl*i_s 1kJi-nJd* o^ f frankness ______1 _________1 will also act as,
without making'- the formal inspections a,barrier to the disturber from the out-^'
that are the duty of the safety depart side who is attempting to create friction
ment, bring to attention unsafe practices by promising the impossible. The men
that might, 'for a time at least, elude the will know that the disturber's promises
eye of the most vigilant safety inspector. are false and -impossible of fulfillment.
We encourage our representatives to re Gradually a feeling of partnership will be
port such'-'practicesi? and when they are generated, and the old idea that men:and reported we make haste to correct them. management mast of necessity be enemies -
Sometimes these practices are reported will be broken down and swept away. to the representatives by workmen who '" This new industrial relations .policy will
cannot help but be impressed with the do more than anything else to make the prompt attention given their complaints safety man's job more effective if he will
o r .suggestions when they are passed on to the management by the representative^
We should'-' know intimately what -the) men want, what they are-thinking about. We should have a living picture of their
key his work with that of the industrial
relations manager. Working together, they . will not only do a real job for .the men, but also for the company, arid it must be a good job for both.
Developments-in Hoisting Chain Practice
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By W. J. BLOOM
Metallurgist, Otis;-Steel
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The selection of a suitable quality chain of the best material and workmanship the marketjaffords is of, utmost impor tance.''Material which is ductile and suf ficiently elastic -to recover from the strains produced by shocks should always
Company^ Cleveland, O.
be used. Though a high tensile strength ffiay be obtained with hard material of low ductility, such material has been found, unsuitable,'since it is liable to frac ture when subjected to sudden loads.
The links of a chain should be designed
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as small as is practical, since the greater ' this, working stress should be based on
the number of links in',a given length the an ample margin of safety. We have es-
more flexible is the chain, the smaller. tablisKed the practice of purchasing sliugs-
the transverse ..dimensions of the link the made up completely by the manufacturer,
less bending action at 'the ends. In this way, we are assured of atta'ch-
.Ordinary short link or, close link chains meiits that are correct in matrial and\de-
have: links with* an approximate pverall 0 sign.
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length of four and a half.times, and a The kind of sling used depends largely
1 breadth of. three and a quarter times th on the! nature and shape of the. articles to diameter of. the bar.' For chairis designed -be`lifted. The size of the chain is deter-1 -* .
to stand severe shocks, links: with slightly ,, mined by -the weight of the article, and
oval sides^ instead ' of c$traight sides ai. ? also by th.e tangle between the legs of the
adopted* as they give the chain greater s*"li-n-g---o-r--t-h-e---p-o--s*i"tion in which it -m--u--st be
elasticity.
used.
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Every user, oi chains is, familiar with In. our,,steel foundries where large castr
the recommended safe loads for short ings have' to be raised from a mold, it
link wrought iron chains, the Chain often happens that the whole of the sand.
Institute and the. Rational Safety Coun Js not removed from .the sides of the cast
cil, but it may be~Well to recall that the ing, and the actual- load upon the lifting
safe ,working load for a long "link chain gear is .augmented by the. pressure}of the O should not exceed two-thirds of that for ` .-. sand, .or the "suction" *I`the sand, as it.
a short-link chain of .the same damete'', is termed by.the moldees..Lifting gear of'
Now,Its to chain attachments. A ring -ampie (dimensions is therefore always'
should be made iif material equal to or used. - Again, in the; case-of our steel
better than the material of which the .works,.the removal of "skulls" (slag con- c.
chaitiis made. A ring must be suffi- taming, metal) from furnaces or casting
ciently strong to cafry safely a load'equal pits entails unknown loads on the crane to the sum of the safe loads of all the and.sling, chains, and special precautions attached chains, and, moreover must be are taken.
capable of standing the total proof loads The important connection between the
of-these chains without deformation! There -is little variation in the general,
outline of ordinary '"hooks; both "the. in-, side curved surface and . the outside'
actual tension in the leg of a sling and its angle of inclination should' never be overlooked.'.It is often assumed, and at times with disastrous results, that a intil-
curved surface are usually circular in tiple-jegged' sling will safely lift a load
shape, though not necessarily concentric. The opening or gap of cthe-diook must be
equal to the saf load tiplied by th^aum ber
of qp
one jhjgs
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eg wh
mul ereas
sufficiently wide to admit the largest ring ^ihis^is^only strictly .true
the legs
which has to he placed, aomn i4t
"~"aBffe~titni *a%vertical npnocsittiinon.
When a hook is loaded, the material in the shank is subjected tto a direct ten
sile stress; this should^ hot exceed three tons per square inch.u The material in ' those sections not in direct line of appli cation oi~the load is objected to stresses caused by bending action, inuaddition to
th e' direct tensile stress caused by the ,,load. These bending stresses increase with :-the distance-of the section from the line of loading, aim are tensile at inside, anil compressive at the outside of the hook.
The stress at the^insidg is- the. greater,
and a hook, therefore'; should {``designed ' so that the. maximum stress produced by
tfi^^working load does not exceed the working stress usually allowed for "the
material of the hook and as h'ooks are
subjected to varying loads and shocks,'
Chains and other lifting gear are often exposed to abnormal temperatures in foundries and steel works, and those in the open ,are -subject to variations in at mospheric .temperature, including--, frost. The strength of iron and steel is.hat.se- '
riously impaired at ordinary temperatures, but above 600 degrees, F. the strength di minishes rapidly with increase of tem perature. Possibly .with.j.the. exception of (lifting appliances attached to ladles for
moIteh?metal;rfew, if any,'are exposed, to temperature djfceeding 600 degrees F.
T h e r e . h a s c o n s e n s u s of opinion among chain users that chains exposed to frost become brittle andRare liable to
fracture without warning. Recent research., suppovrts this vie|Jw. 'anid s>h ows t.hat, %a__i- < though good quality chain iron does' hot
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Twenty-fifth National Safety Congress
develop *brittleness in the .absence of repair was considered ^necessary;.; chains
.containing defective welds or- links which ^-aref subject .to .cht^ubs^'ww/ ithe^-ex-:
have become notched or damaged in sery- aminer must: evntudly ;decieSwhen; the
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- . wear is sufficient'to redtf:.,the chain un
i t is, therefore, necessary to avoid ex- safe for its! norma! working' load. This
posure *of:chains and other lifting gear -decision is usually'ltft. to the! experience
. to extremes of temperatures, a s ite s e andjudgm ent of the'examined If a chain
tend to.aggravate the effects of anyslight containing -wrn'^dflh^oiea^^stortidr
cracks,'fliws, bad welds, or similar de- . as if ^enerally doiV/ tl^e;chain- is removed
fccts.
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from sendee and the' worn linka re re-
Although annealing or normalizing^, placed. In some, cases,, chain-dr ap-
thains and other appliances will cure '" pliance must notf be used for its maxi-
the.skin hardness which arises in service, mum- sfe working load if the ^wear-ton
neither of these heat treatments will pre
vent thc-subsequent development of'this hardness''when the chain or appliance is
any part exceeds::10 per cent; .in-: other
cases wear is limited to & reductionJIn
diameter pf theirorn of 1/32 inch- for,
put into service again. 'Periodical anneal chain's up* to 1 inch, and 1/16 inch. for
ing is, therefore^, necessary. . chains overri Inch. In all cases, the gen
The period which should he allowed eral condition of the- chain is also taken between consecutive annealings will de- Into account. .T he wear, of a .chain; it pend on the nature and amount of use of often local,'and the life of a chain may: the chain or appliance. - We- believe it is be extended by changing' ends) thus subthe general practice of most large users jecting different links to wear.
D of tcehLaaaiM nsa'1 to -Sa aspneacaiiffy adles fCim nIite M pearaiioAdftsa for
annealing, different classes of chains;
T I ti iis now MA dtthaA e 'M prMactica-e''ai t the Otis Steel Company to identify -every chain ini use
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As a matter of safety^-dll'.Chains in or in their various departments. -New- chains
dinary use, which are of wrought iron are marked by the manufacturer, -but
and mild steel, are annealed once at least . chains which have been in- used for-some
in. every twelve months. These chains, time have an identifying letter for the-
When subjected to freqdent or- severe-use department and a :number for the chain
or where employed. in carrying molten . stamped .upon a metal marker which fc
metal, are* annealed-at least once every bolted' to the end links: W e have-devel six months. Chains subjected:' t o . spe oped a. system of records) which, tie in
cially severe use, such aT those on .cranes with chain identifications. These records
or grabs used to unload coal, ore, scrap,-, which a>e maintained.by the chain inspec-
etc., .are ^annealed once r every three tor contain such information-as: ..
months. 'J
1. Brief description-with important- di-
One great advantage of periodic an- *mentions; 2. ' Purpose-, for rwh!ch used;
nealing is the opportunity offered for 3. Reference number on the- maker's test
careful examination of the chain, since, certificate;- 4. Maximum permissible work-
with removal of all grease and dirt-by' ing load; 5. Date when issued for-use; firi--ng, "th-e--.-s-u--rf'a--c-e---o`f *t*h-e- --metal 5i-s--e-x--p-o--s-edJ . 6. Dates *f annealing,''examination, re The examinations are made bycompetent, pairs; 7.N ature and-extent of-repairs.
practical men, conversant with the-land Filing^ards afford very convenient recof flaws and defects likely to be found, ords where large numbers of lifting ap-' and able to make due allowance forvny pliances are used. A record of each chain. wear or distortion when considering vihe ` Koolc, shackle" or sling with, its attach'
safety of.-a`chain. Though detection of merits is ntered on'.a separate card,-and
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minute cracks in the metal is often diffi- the cards are filed according to-depart-
cult, a fire testifacilitates their discovery, ments- Different periods, for annealing
and is.applied, in case of doubt- . a may be indicated by- cards Of-'.different
Previous to the inauguration of our colors. O
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present definite plan of control, the wear . In each department there are -also in o f '`chains was often allowed to reach se spectors whose duties and responsibilities
rious proportions before replacement-pr are to inspect all chains and chain assenv
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a..." ,AMetals Section
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blies; and to .observe ju8ti how the chains deterioration in service^ was foundcthat
are.used by worjtoon.-.: - A : ` ;'; V ' the hammering o f.th e scarfs produced
. Inspectors-; are >,authorized to decide . small~dt>ressiqpain Which scale and dirt
when a
shsdl.be .removed from.sery- were imprisoned when the btfter edges of
' ice'fdfrirepairs;''^fatrif^t.'ior/'rplc'ment.^ `thejyjeld were: properly untied.-.Thus noil*
Al} materials
adhesive .areas were : formed :within &he
to-.tiiex metallurgat 'departmentwhich'- weldwhich sometimes:extended- to th
then assmesv air rs^psibilitis for re- surface, of the metal,J)ut were visible only,
conditioning o r.replacing1chains and later asoveryfibe cracks." . ...p *
returning 'them to dpaiVment 'atorerobtn If a weld is made at a low tejnperature,
for-future, use' On a ; specified da :each= the..edges of th weld are hot properly
week, a meeting of. the'department'.safety closed, as tlijtsp.parts, cool first. This de-
- committee is/held,-an&the.inspector,.to-,? .feet by hammering is sometimes unin-
getherwith a representative.of-the metal- tentiohally concealed. Perfectly . good
flu1rgi*c a*l, dite**part.m eh.t, ..is inJ ictl.uldj edj.- -m`fC* opie's we-ld- s ;-h`ave .at-,times rough .edges .vriiic'ho,
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- of-yinspctorfs, reports are.*presented,-land maj. mislead even an expert chainexam.-
the'* uses and abses^of chain equipment iher.\L '' .
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We immediately set about 'finding a
At -the outset of the; chain program.at solution to. our problems. -The welds ofc
the' Otis*.Steel .Company, we, of-course, the chains were giving us the mst trou-
were primarily Concerned with: educating ble/so we decided that in our preliminary
the. employee .-in the proper yie of.the.. investigations, we ,, should consider ' all
equipment already in use in the various types o.f chain available.
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department;. W e.stressed all the points Of the several samplesCof -chain sub-.O
previously dlscuiied, selected inspectors, mltted for .our first, tests, we; found, that
established central- repair stations, posted i there Was only one that showed any ,
safe load harts .conspicuously :about the marked -advantage ovfcr'the others in .ten
.. ipnlacnatsri,nignsfiosrt.ecdh, aumpopning'foaocdt, hwoeusdei-dk'eeevpeirnyg- wsileeldss.treTnhgiths ,chdauicntticl>itnys,evaenrdal^scthreecnkgtthestosf,. * O
thing] possible to make or lifting equip- performed-exactly as it Jrad in the first
mefat safe. We found, in the course of experiments;:` i t not only exceeded its
our inspections, that|w hile chain ,failures nearest competitbr in *te---ns8ile-.streng-ath, wbut
had been.reducd tocp. remarkable degree', in- no case did it break in uie -weld.0 Mi
o we were still having'them and it. was ap- croscopic examination:of transverse
parent that 'tiier. rs still1work to be tions o f. broken -. links - cut through ,the
done. : Examination of chains after .the welds revealed,-that `the fusion? of metal
herentiy -defective* .chains; and; we -were Chemical 'analysis ,,of .-the drains -di. buying 'thet*best /.dredge;chains on the vulgetL that thgy were made of a matemarket;-. Tabulation of t_h_e__d_a_tiP_g_a_t_h_e_r_ed rial that-was*: entirely ;new to the. chain during the: investigations of- failures, re- 9 industry, an alloy, that conformed, to-the vealedVthat the double-refinedwrought specification of -tteSdcietyi.of- Automo-
iron dredgej-chahiwhich several; genera- " tiv.e.Engineers forTJAE 4615..Q - . * * '
tions of chain-makers hadsperfected, did Two sets of-Chains were immediately,
not ntiray answer, our- problems.
-purchased and placed in .service in a de-
,WeT<mnd.--tnat-?failures -due solely to partment whereotHey woujdbe in almost
reductiomofvm aterialby wear .were less nstatit us; .here/they were examined at ; ,t.--
common,and that, next Ao misuse, our' -least'once every, m onth-forabouta year '
greatest difficulties-:wererbeing encoiin-r and ahal.= iSincenqfiaw s, eyidence-oi
terCckby failures t the'.wdd. These weld c wear; or work-haidenihg was apparent, at - *o
failures -ih.-general were/due to: the fol- the V^nd; of th at;timei>;the inetallurjarical
lowing caused: >
^ -.
department? alon'g -with _the- department
l.* Scale- and.idirt Jbetvireen ;the joining superintendent, recommended'`that the al- ^
, 306
Tw enty-fifth National Safety Congress
9
th new alloy:: chain were received with alloy chain, using the standard safety fac enthusiasm, particularly by the crane f o l tor of 4 in each instance.
lowers. The new chains hung free from
the crane hook, that is, they didn't kink
or twist, which Baved considerable time
in making lifts. This non-kinking feature,
is in itself an innovation in the field of
chain manufacture. I t is simple, but then,
so many im and labor saving devices
are simple.
v
A built up section at one side and at
the center of each link at the weld pre vents any link from slipping past the
center link of the link preceding it--
Size
' Dredge Chains
1/2" 9/16"
.......
:.....-4 ...
5505800Lbist,
5/8"
it
3/4" ...10140 *it*
7/8" 1" ..
..14000, U
1-1/16
(t
1- 1/ 8"
it
-l/4 " f ....' ^.34500 4t
l - 3 / 8 " v --^
Alloy
14400 Lbs. 18000 " 20600 " 42000 "
which results in a practically kinkless
chain. Alloy .chains -*are now recognized as
standard for all Otis plants. They-are used in all sizes in which 'they tare avail able from 9/32 inches to 7/8 inches, and they have been in general use-for almost a year and a half without a single instance
In compariifr_g^ the figures .-.I. have quoted, please note that the safe working
load of 1/2 inch alloy chain is fl4400 lbs.,
notice also that the safe .load of 7/8 inch dredge chain is 14000 lbs. I t is apparent,
therefore, that those of y o u . that have
been using large bulky chains that are... hard to handle, can minimize this diffi-
of failure due to defective material or'X.culty by reducing the size of the chain
Workmanship.
. aruijstiH maintain the desirable factor of
`-As a-`comparison,. I cite the following safety^ However we recommend that you
figures- which are ' safe loads for double- . take advantage of the additional margin
refined wrought iron dredge chain and the of safety of the alloy chains.
A motion picture on "Foundry Dust
Control," .produced by the Liberty Mu tual Insurance Co., Boston, concluded the
Monday session. The discussion which
followed the addresses was based on the
following points: :
1. What is a good method for mark
ing, chains for identification and record
purposes? Stenciled metal markers can be fast
ened to all chains.
2. How often is! i t necessary to an-,
neal alloy chains? '
Mr. Bloom stated that alloy chains In
use at the Otis Steel Co. as long as three
years had not yet indicated any need for
annealing. It is probable that the com
pany (will return the chains to the manu-
..facturer from, whom they were pur
chased when annealing or repair is found
necessary.
-
3. How may foot injuries be avoided
when handling chains?
Mr. Filmer, of the Youngstown Sheet
& Tube Co., described a platform which
may. be located slightly above, the floor
-and below the hooks, on which the chains'
are hung for .storage. As workmen re
move or replace chains,, they stand with
their feet partly under this platform, so
that falling chains may not cause serious
injury. Safety shoes may, of course, be
used also.
.. '
4. :How may the difficulty of holding
safety meetings for men employed on
different shifts be overcome?
Many industries are holding safety
meetings on .various shifts, cither day or
night; under the foreman in charge of the
shift.
..
5. What is-the .proper protection for
hands when handling rough, oil-coated
materials?
r Mr. Ralston explained that a waxed,
"glove is available which, in some in
stances, has been found quite satisfactory.
Another suggestion was the use of hand
holds made from burlap.
a.. Metals Section
/ ,
IJ
6. How may the use of protective 7 . How many concerns require the
clothing be made mandatory? ' . -use of -abdominal belts as protection
<> Mr. Ralston suggested that applicants^ against hernia?
-
for employment be made to agrefc', by They a re ; required cin many'instances
placing their signatures" on .appropriate where e x a ltatio n s show employees" to
cards, to use safetyQequipment whenever ^be
'-There is no
C ii may be required. Without that com- unanirnity>^?^&iiinion among doctors,
( pliance, men should not be permitted to some-recommending the use of such belts,
work.
while others advise otherwise.
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.0 WEDNESDAY MORNING SESSION
' ' v OttoBr 7, 1936 0
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3
Safe Practices in!Welding "
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c"> \ By C. V. DAVISON
r'N
Superintendent ofcPipe Manufacturing, America^ Rolling Mill Co., Middletown, Ohio
If our welders are not instructed .^prop ity, cost) service, a knowledge of his job, C-;
erly-in how to do theirwjobs we may and good will. - The welder can control
cause accidents to individuals .-who have put their confidence in our ability. -Each uday itnhuo.uusaaanudus' asutaukwec their lives ,on weld
the first ;three; these, combined with the fourth,-make the fifth.
The'-approach to''an Ideal safety oswet. up
ingr, a^great many of whom do not know r .4--safety in welding and safety from . o what welding is. Check, the welding. jobs welding-- may look complicated, but I
u_ ndaer y___our. jurisdiction and 'visuaVliimzae 'sfhi naflfl nol tuf ttilvini ne how l l r t t i r -t twr ae approached aour what might happen'to the .users if your problem.
welders, do not do a sound job.
.
Late" in 1934 our business, increased.to
A welder can make a job which will the point where it was necessary for us
look perfect on the^ surface but under fo/take on additional welders. which we
neath will have lack of fusion, slag ,jn- could not find in'*'our territory. Thus we- D
. elusions, or burnt material which may were forced to make welders, as. weld
cause breakage unless there is . a great ing, lik^many industries, had not trained
margin, of safety in the design. ' The X- many apprentices during the depression.
ray can .detect ithis Condition, but} unfor- JWe selected as a training instructor pne
tunately "there are but fevoX-rays.com- , bfcour best welders, who had a thorough
pared with the amount pf welding done"' knowledge bf our products and proced-
daily.
0
v
'.ires, and developed-a. course of training
One solution to this problem is for th.b not only to-help, our older welders, but
wsaeleldsi-nmgindseudp.ervTishore twoelgdeert hdiespenwdesldeorns | to EdaecvheloJpobne-,wwSosn^ebsr.oken down into its ~Q. i'..i5 the salesman for his wprk; the salesman component parts, ^safetyin the* plant and depends on- the welder's ,,quality to get safety of our product in the field. We this work. He must have a job to sell selected as an experimental group 35
that he knows will prove Satisfactory. men,ca few of whom had ha'd welding ex-
We try to educate our. welders to" know^ perienie. These men had varied types
that a. salesman has only'ifive tools:, qual- of education from three years in grade
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_ 308
Twenty-fifth National Safety Congress
school to some college training. We were cause a flash which, is likely.to burn by very much surprised to learn how little standers; Care should be taken in plac- c
some of the 'men whom we considered -ing leads around the, floor, as someone
good welders knew about their equip might trip, injuring himself as well as
ment, how to use it safely.
breaking a connection which might cause
One of the first things we studied was a flash.
the safety-switch which controls the cur .We have had some (flashes from weld
rent going to the welding generator. ing hoods, due to their shape, misuse and
H ow .many of your welders know that leaks around the glasses. Our training
this switch should be disconnected when has largely eliminated thia condition; we cmaking repairs to equipment? Also that have shown .the operators what rough
this switch should be pulled out with usage will -do, and the. trained man. will the left hand while standing at one side, not work.-witli a hood which has holes
so that if there is a flash when the cir that permit' light rays to enter. We sup
cuit is broken, the workman will not-be ply each welder with a slag hammer and
burned about the face, 'since the majority brush to clean his weld and have tried to
of these switches are set from four to have each welder wear a light pair of -
five feet off the "floor? This-may seem goggles under his hood to cut out light
like a minor detail, but through one man's rays and also to prevent1flying objects
knowledge of this point we avoided quite r from entering his eyes while chipping
a serious accident when a switch was slag. This has been quite a problem, as
being pulled on a 440 line and. .the flame. it has been,very hard to find a safety lens
shot out several -feet Our -workmen goggle light enough for this purpose.
were also instructed always to open the safety switch before opening the cover
of the starter for any^-reason.
W e instruct our welders and their
helpers in the proper methods of han- . dling the -materials with which they work .
They were shown why,.they should ' never place metallic . objects - near the
welding s e t Under "Reactance" we have a paragraph-which reads: "Never
place metaflip objects where they can
--principally pipe, quite!oftemof irregular, shape.
We try to get the welders to put the
ends of their electrodes- in boxes; on th e . floor they present a felling hazard.
contact the .coil of the-reactor while th e , The gases given- off from an electrode
.unit is running. This may result in dam are not dangerous in the open, but when J
age to the equipment or a severe burn7to welding irija confined space, the worker
the workman."
o should be instructed to make,- provision
We .do some welding with resistance banks. ^ The operator is instructed as to
how these resistance banks -function; he is also told before any .attempt is .-.made to repair a resistance batik to. be sure that the safety switch feeding the bank is open. Otherwise he might be burned.
for .fresh air. Witli^all the work we
have done along this line we do find our welders working in confined spaces with out proper air. This point - should be stressed, as' a welder might become gassed when working alone and not be able to get relief until it is, too late.
Welding leads-are one part.-of -our., An arc screen is not used enough in a
equipment which- get terrible abuse, as ' "great many plants.. The welder, if prop
they are often dragged across sharp erly- clothed, is safe from--flashes and
corners of steel plates, concrete, or brick burns, but without screens he often sub
floors; such treatment tends to cut off jects other workers to hazards. The
the insulation. Often a welder, not un best type of screen is a light, portable
derstanding his job thoroughly, will select one made, frbm pipe and fittings to which
a lead too small to carry the necessary is attached' a-piece of awning. It should,
current, which may burn off the insula if possible,.entirely surround the-job.
tion.
.
..It is often necessary''-for a welder to
The .electrode holder is another -great do his own putting, and sometimes this
ly-abused tool which, when not: properly - is done by men unfamiliar with the
taken care of.^will cause excessive heat proper handling of oxygen cutting gases
ing and may" burn a worker. If the and cutting equipment. Sometimes the
holder is thrown down carelessly, if- may workers around a plant will foolishly turn
o
Metals Section
on the valv,es and play with the adjusting the foreman or service man in order that
screws "on''the regulators. Each man, repairs may be made'. Defective equip-
bfifore he starts,, to cut, should .'check the ment often results in defective workman-
valves and regulators 'to see that they ship and. in many cases makes the job
have not been3 tampered with. Oil or dangerous.
* (7
grease shouldmot be. placed on an oxygen i- Hoses should be protected from hot
'connection, becausethese materials will sparks and metal. They .should never be1
not mix with, oxygen 'except as an ex run over,' and excessive tension should
plosive. ,.
not be placed on them.' Oxygen and gas
Regulators on gas- and oxygen con hose" should have right and'left-hand con
tainers are ,,connected to ''the valve by nections, respectively. Excessive pfes-
threaded connections. ' Such .connections sures, which might, burst the, hose, should
should be protected from bumps or cross'^be avoided.
threadin. g or ' t.hey WwiI fll become- UM seless. Torches are made to be Used only as;
Bottles, whether full or empty)''should be torches and should never be used as'
scored ..in their prop'er places.
hammers o r pry bars. Such treatment
Oxygen bottles aye charged, with very would result in distortion or breakage; high pressure apd should J>e given ..spe making ^jie unit useless, teaks In con-
cial safety attention. Should a valve be nections, valves, tips -or blow pipes are ' broken, the pressure would exhaiist-with dangerous and should be ..reported to the
such force that the Heavy., bottle would .foreman3,or maintenance man. It is' very
turn- into , a. rocket. . . . . i . .. , , essential that tips be kept clean and in
The safety ,cap should never be taken;. d condit|iin
from the valve until the ^bottle is placed
.
in position for use and made secure, g o g g le s are purely ,a safety device.
Oil under pressure is highly explosive ^ e y should have non-shattering lenses
and should never-'be placed on threads o f^ sp^ c,?i f'ber-colored optical glass
or connection of oxygen bottles. When and should always be worn oyer the eyes
not to be used for some time, the valve^ wglhairlee H,,cnudtt-inflgy,ingfoprartpicrloetse0ctoiof n meatgaal inosrt
on both oxygen and gas bottles' should b turned off securely to avoid waste
slag.
The outer, clear glass should be
and fire, hazard. ' *
),
changed for new lenses when it becomes
Too much pressure" should not be ex- spattered to- the extent that vision is.
J erted upon the hand screw of the regu- obstructed. - o '
'^
j. lator, or the mechanism 'inside may . be . Friction lighters0are snjall mechanical
injured. The hand screw should always torch-lighting devices^ composed of a
. be .run out when the valve on the tank is wire handle, a file,, and flint.- When the
closed,' to protect the' low pressure gage handle is squeezed, the flint passes over
when the valve ,,is reopened. Q
-ho' file, thereby causing sparks to fly.
. Gas connections are .always made with This provides a "much safer method of
left-hand^threads, while oxygen connec lighting a torch than matches.
tions are made with right-hand threads. Good, tight-fitting wrenches should" be
This s' done to reduce hazards an d , used ,,when changing any connections on
should be checked carefully before malf- ' cutting, equipment. A lPnuti'are' made of
ing connections..
' brass and would easily be chewed up or
Defective gages ,or regulators should the corners rounded off by the use of
'n o t be used but should be reported to poor drenches, pliers or pipe wrenches.
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^Handling Material By Hand
`
, . By. C. B. RALSTON
O 4
Safety Director, Pittsburgh,.Plate Glass Company, Pittsburgh, Penn.
O
O When we realize that over 25 p*r cent to hand handling and manipulation of
of all compensable injuries are chargeable materials, inrermay well wonder...whether
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310
Twenty-fifth National Safety Congress
we have not been overlooking a funda-" other items; enter this picture and cause
mental question. Have we not been dis much grief.
posed to overlook hand labor because it The' physical examination program must
is generally .-termed . "common labor," . therefore take first place in a proper selec
which any man could'do, and wre we tion and 'placement' plan.
not inclined to feei that no special train Important items to be given considera
ing-was necessary? Records for New tion by the examining physician are:
York State show a total of $5,000,000 paid arthritis or rheumatism, tumors, tubercu
in compensation for injuries chargeable to losis, syphilis and bone abscesses, infec
this classification.
tions from abscessed teeth, diseased ton
'Of all industrial injuries reported, 33 sils, infected sinuses, etc.
per cent are t hands and fingers and When two men. are carrying a- load and
account for 18 i>er cent of the compensa one slips, it is not always -this man who
tion paid; 24 per cent are to legs and suffers an injury. Frequently the sudden
feet, with 20 per cent of the compensa shifting of .the load to the other causes
tion; and 11 per cent are^to arms, with him to be injured. If two men can barely
13 per cent of .the compensation costs. handle the load, three should be used.
"Falling- objects" while being handled This is not waste f labor--just good
are chargeable with 5 per cent of all in planning. " The waste comes from having
dustrial cases with 2-per cent of the time ' a man oh the disabled list, non-productive,
- lost and 6 per cent of th compensation. but an-overhead expense, and this may Be
"Handling objects" are chargeable with the deciding factor between profit and
29 per cent of all industrial cases and 17 loss on a given job.
per cent of the compensation. '
Care must be taken to see that the
Another phase of this 'problem is that 'laborer is fitted for his work. The short,
of infected cases. The estimated.total thickset type of man must be given the
cost of. compensation paid for such in heavy lifting and handling jobs, while the
juries is $20,000,000 per year. ;-,Of this lighter work goes to the slightly built tall
amount 72 per cent is chargeable'to hand men. While there is no 'definite rule, I .
and finger cases, 17 per cent to legs and believe that loads of not to exceed 100
feet, and 7 per cent to arms.
pounds should be considered the efficient
A distribution. of "Handling Object load limit for the average mail.. Fatigue
Cases" by industries would indicate the or weakness will often be found as the
following:
`i
cause , of dropped loads. It is certainly
Glass Products . . . , . 40 per cent
inefficient for .workers to lift to their ca- '
Clay Products ........... 36 per cent
parity-
Foundries .................. 32 per cent
Improper Method of Lifting and
Steel Works ........... 26per c e n t,
Conveying
Chemicals
26 per cent.
C onstruction'...........26 per cent
r cannot help recalling many personal
observations--both on construction work
An analysis of the general problem and in connection with regular operating
naturally divides it into /the following conditions.--' The,, outstanding : fact has
sub-divisions:C.
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*
been: the lack of definite instructions fy
Poor Physical Condition
th supervisors and their apparent inabil-
ity, or incompetence, to give such instruc
While we find much opposition to phyi-_ tions. Thisj includes their failure to prop
cal examination programs, we must rec erly recognize rthe mental capacity of the
ognize the fact that, under existing laws . laborer, whether he'be a foreigner,'or an
no employer can legally operate without American with little education. On one
them. The* laws made to protect, the construction job the foreman told an Ital
worker require the employer, to furnish.. ian laborer to go to a certain place and
a safe place for hint, to work This can bring back a barrel of salt. Th order
not be .done if <'fhe employer /does not was not clearly given and the man re
.know the condition of -the man and his turned with a VBucki saw" over his shoul
possible susceptibility to certain kinds der. v
;
and types of. exposure. Straiiis, hernias, Training of labor supervisors, as well
falls, vision, colds, constipation and many as of laborers, is req&ired as much, if not
0 .. O Metals Section
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more than in other tirieir of-labor effort. bound'to0r e s u l t f a l s e sense of security"'
An inadequate force is not only Ineffi and the responsibility of the employer is
cient but dangerous. The distribution of increase^.
the force to the load;it of primeJimpor-' In addition to protec:ttiivvee,, equipments) tance, -whether handling' boxes, crates,^consideration should also be iven'to pro-
barrels, timbers, rails, ^pipea or other vidlng special hand tongs, or grips, for
bulky,-as weli asdengthy, materials.
Team work is very essential and only obtalited"' through careful; and systematic training--one stow thinking, or acting, man can and will wreclrthe-gang. They
certain materials. When the. -working conditions indicate
the 'need for protective equipment, its use should', be a requirement of employment
--no protection, no job..
are a menace, not only to themselves, out ->others, unless .th e ir' supervisor is con-
stantly'-reco^'nSing their weaknesses and
fr V " . .Unsafe.,.Practices o j j d e e -4 h M a . s i J c ^ we ca.n con-
plaFcaeislutrheemtoa. ccoobredyin-golry'd.ers ihay den-ote>
either mental or physical inability an<j should,,be a warning flag to the super
visor. ^In-som e cases tfjis cSn be. attniiuted to stubbornness "or independent
'thinking, although we generally find only ^muscle and'bone in>comnion labor groups..
.q-uaetre tf,0o0rche.ea^Iyr' eocraolJl)uml!a5ynyooa^ld-'ti,mpreinstj?odne masons and, their handling of stones too heavy for one man to properly handle-- hernias were common among the men--
Jhcycrhad never been taught how to'-lift,0 such methods were .not thought necessary
nor given any considerations Walking backward with-loads is a dan-
Inadequate Hand and Foot Pro_t_e_c_ti_o_n gerous practice and this is particularly so
This is mainly the problem of^he c m - restricted areas:. Visioir-is very impor- "
'ployer-, worked out through the siiper-
f here is not-only the stumbling .
visor. Too often the employer fails *o -hazardl to be considered, .but also that of recognize that in hiring labor-, h- e has bruised hands and arms against project hired only, the man and fails to properly ing piles *i>f materials or parts bf'.permaconsider,the hazards to which the man ne- structures. wjli be exposed. Protection against bod Store-room hazards are present In prac ily injury, as well as protective clothipg, tically all plants--such"as handling; mate should receive very- caj-eful consideration. rials with rough surfaces, as well as those All exposures should.-fie analyzed, in jus which offer no (hiand hold.. A.'man was {ice to the laborer, and adequate -protee moving a large paper cafton by turning i t . tive equipment should be provided. I n \ over a^d over along the ground instead
some cases this may only" ifivolve th e ' f usmg a; hand trade or securing another
hands, arms,-feet and legess;i1'while in-others "J4" heIP h.,m; Soma jagged pieces -of
the body ,,will be included, such as in glass become imbedded tn the carton and
handling dig-iron or other rough as well his hand was severely cut by the sharp
as heavjc' materials^ Hot substances and edges.
.
acids call for special consideration and Care should.be exercised in piling and
treatment,as in such c^es^iVe find thix blocking materiqjs so .that they will not
'face, head and eyes also^inyoli&d.
v roll, or slide, and sef^that.they will fur
haPndrospwerill pinroctluecdteivogel'oveeqsuiopfmveanritoufsortypthees nbieshrephraonpdelerdh. and-hold when necessary* to 3
as well as wriit protectors and hand laps. _iSqlky materials should be carefully
Leggings and special .foot protectors, tipped to a balance and secure hand-holds
whether the latter be safety shoes,-m'etal, obtained before any! attempt is made to
or leather guards, will be clearly indicated liftorumove.
D
from an analysis of ..the exposure. I fear O Piled materials sijbuld always be raised
that:; too often protective equipment is from the pile before any sidigmovement
purchased entirely on a price oasis and in order to prevent, dragging whlclcmight
as a result many preventable injuries <Jcau8e **> balance of the pile to fall
occurrthat never wouldJhave occurred nad-
Inadequate Regard for Inspection
proper consideration been given the im-
*H*t-u--r--d*s
portance of the problem. Wl\ere inade - This condition can be accounted for An quate .equipment is furnished, there is several ways--namely,ignorance, inability
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Twenty-fifth National Safety Congress
to think, inability tcrdraw a personal les- accident losses. ^ T h e larger, employer, as
son from the experience of others, over- ,well, cannot afford to overlook the situa-
confidence and a desire to make good on tion--his losses, through 'waste f -time,
the job. These can only be overcome by money and materials, will seriusly-affect
careful and systematic handling..-on the- his profits "and.hold his company-'tip to ' part of the supervisor. His is the respon- the public as very inefficient organizar-- sibility of putting over to the worker the. tion. The ever -increasing cost of com
prable and advantages resulting from a pensation iflsurance will undoubtedly be a
Y'-close observance of rigid safety inspec- factor in forcing more consideration for
^-tions. ' J
-well organized safety work. Personally,
. Systematic Organized Safety Effort
I emphasize the side of humanity above the dollar and am satisfied from long ex-
There-should be little need to make a perience that where humanity rules, the
". plea for more concerted action along this profits;will be satisfactory. Where a real
line. As safety men, we know how eas- safety program is followed, without doubt
fiy the. small, employer could be put out. r efficiency and economy of the highest or-
of business as the result of-even a few d<er will also prevail.
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The Present Status of Control of Dust and Fumes in .Industry
: By H. B. MELLER
Managing Director, Air Hygiene Foundation of America, Inc.; Head, Air Pollution
Investigation, Melloni Institute of "Industrial Research, Pittsburgh, Pa.
.
The problem divides itself naturally info
Classification of Dusts
medical, preventive engineering and legis- There are available different published
lative phases, and includes consideration classifications of dusts. Included in such
of the responsibilities of employer and classifications are dusts, the exposure, to
employee to each other and to. the public, inhalation of which are, or are likely to
-It is axiomatic that, in case of:physical be, occupational. , Those that are inher-
disorder, impairment of function or dis- ently toxic'when inhaled or otherwise ab-
ability, the more thoroughly the cause and _ sorbed and which cause systemic poison-
course of action are known, the more . fag, include lead, arsenic,, mercury, man-!
'"certainly can possible remedies be applied gaese. Examples of dijsts which have
or preventive measures taken.
q the ability to penetrate the deep ,lung tis-
In the diseases or affections under con- sues and to be retained there are quartz,
sidration, there are.fabts upoirwhich pre- .flint, chert, asbestos, talc, coal, iron, clay,,
ventive methods aje based, and upon slate, and other types of rock dust, which further studies now^ in course '"or. Attention here will be centered upon
, contemplated are^at least in part, predi- this last group and upon pneumoconiosis,
'cated..
.
the general term used to designate lung
>: During the development of th present conditions caused by dust! Silicosis, which'
state of knowledge of the influence of is caused by the inhalation of free silica,
so'me air ^contaminants on health natu- . has been prominent recently in the public
rally, many theories were advanced that press, sometimes in a way that mademis-
' . later scientific work has modified or dis- understanding possible, if not probable.-
placed. However, not always has the Aside from silica, many .of the insoluble
correction been as widely and'thoroughly .mineral dusts may bring about slight
disseminated as was the original theory;: changes in the lung tissues, which may be
! -this condition, perhaps, has led to som edem onstrated on the roentgenogram if -
confusion in the minds of many who have ' there is silica in th dust that is inhaled!
not followed too closely the evolution of As far asHs known today, most of them
knowledge in this field.-'
are relatively or entirely harmless.'-
v.-r v
Metals Section *
o
_ .
313
- a.
Ability of Dusts to Cause Injury t 'of th* silicotic process toward the stage
It'h as been established that ffie poten
of disablement except through limiting or 'preventing further exposure to silica dust.
tiality of silicioiis dusts to. cause lung Nor has medical scien found way to..
damage .,,is; with few exceptions, .depend- - prevent tuberculosis from being super ent upon, .their content of'; free silica imposed upon c silicosis, except through
(SiOO- The ..development of silicosis' de-, ; control, of contact! The course of stficopends, therefore upon the concentration tuberculosis is chronic and is very diffi
of dust containing free sifica'in the air cult to influence by treatment, according
breathed, in other words,, the .total to.phthisiologists.
o
amount of free silica breathed and re- '^Medical Control. As a basis' for intelli .tained seemsto be th primary factor; gent determination of the physical fitness
the length o rtim e necessary for a suffi of, a man for a. job in a dusty trade,
cient accumulation is importantgbut less physical examination, with stereoscopic
so than the. total load. -
b rcterifgenograms of th. chest, is necessary,
-Silica occurs. also -inachemical combina Along with this study'fgoes, naturally, th
tion in sijicats. Some of these com preparation^, of an occupational history
pounds have been proved'to be relatively with ^detail as to the exact nature of previ
harmless to health, some are still in the ous-work and. of exposure to industrial realm Bg doubt) and one?--asbestosr-may dust---not a valueless0 recording of occu
cause the' industrial disease called asbesj pations as "laborer," "machinist," etc. ' tosis, which is the result o f lung daniage Dr.'Sayers, of the U. S. Public Health
similar to, but not identical ^with nor as Service, has developed a micthod of secur-
serious as,^hat produced by free silica. fng information for a proper occupa-
Importance of P artie Size. The size . tional history; among others, Cummings,
offdust particles in the air which an indi- yof Saranac Laboratory, alsohas worked
vidual may breathe-is important. N ot/ out a useful history^ blank. ~
often are partiefes. larger than 10 or 12'. Standards have been developed for -the. microns found in the deep lungs, except diagnosis of silicosis.0 There is also a
in the- cas of asbestos dust, where fibers suitable technic for taking roentgeno as long as 200 microns have worked them grams of-the chest in order to bring1out
way down lengthwise.
; the characteristic lung changes:
Uncomplicated' Silicosis. Silicosis, un From'th considerable amount-of work
complicated by an infection, is more of an tiiat has been done, it is possible to fore-
impairment than' a disability- It isc not seriously disabling until it r&ches an ad
cast with va reasonable, degree of accu
vanced stage, and - does not of itself racy the silicosis potentiality of various
greatly-shorten the life of a silicotic. ,~ -dusts, ,
`y . o
& 0
SiUco-Tuberculasis.. When a silicotic ingPerroioednitcgepnhoygsriacmals,exaaremiensasteinontisa,l,,iinfcelumd
dies, the immediate cause of death is usur ally some type of-intervening lung infec
ployers are to be enabled, accurately to
tion. I t is not known1just why the pres alenadrni*n'ttehleligeenfftelycttooftrainnsdfievridduffaelfcteexdpwoosurkre- , ^
ence of silica ceptibility-' to
in.th lungs tuberculosis,
increases-sus but when an
J, ipen-to
lovFr
dust ^concentrations
before
adult w ith`silicosis is exposed to tuber-1- serious injury,has Been done, or to work
culosis, an active infection may'occur, re out a esystem of rotation where' indicated
gardless o f the previous state Of health. as desirable in order that exposure may
It is thought probable that silica dust can ' be intermittent. Such examinations are
reactivate healed .tuberculous lung lesions helpful0also ip showing the efficiency of
of the adult; type; how'-long after such' engineering coptrol ihethods.
lesions have healed the reactivation^is The ability to place responsibility^ in
possible is not-certain. --Exposure of sili-- casPof claim for injury is no small part
'._V-
colics to tuberculosis of of tuberculous of th' valpe of such' initial and periodic
individuals to silica dust ,is serious and,, examinations.
p
; ' '
should be avoided^ .
ra 0
Asbestosia. iGlinical experience has
After Silicosis has `become well estab shown that the inhalation of a sufficient lished. in the lungs, medical science has amount of asbestos dust causes' a serious.
not found a way to arrest'th progress ..type of fibrosis, which is no't accompanied
?
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314
Twenty-fifth National Safety Congress
(j
by an nnduly high incidence of tubercu
losis.
Other dusts and silicate compounds so
far studied produce, at most, only a mild non-progressive reaction ` in the lungs,
provided there is nonsignificant amount
of free silica in their, composition. While
tions in' air are .recorded gravimetrically
as milligrams per cubic meter. Others;
(as silica, where size is a factor in ^deterinining dangerous particles'); are given by count. Neither methpd gives the whole' story, but in both caSes it may'be
possible^to secure the information neces
not serious clinically, such conditions may give rise to considerable litigation.
Adequate statistics on morbidity and mortality from'occupational disease,' to serve as a basis for effectively focussing the efforts to study and control dust dis-: eases of the lungs, are non-existent.
In concluding this section, the follow ing quotation from a court decision |n Wisconsin is pertinent (Sfchaefer v. In dustrial Commission, 265 N. W. 390 (Supreme Court February; .1936)) :
I t will be necessary to distin guish carefully between medical or patho logical disability and actual. physical in capacity to work. The medical experts apparently ignore this distinction, and so increase he difficulty of arriving at a just result under the law." -"' '
.Preventive Engineering
sary for the purpose, In one of the reports referred to earlier,
there .occurs this statement: "There is
no doubt jh the mind of anyone familiar
with the present ;dust-sampling and dustestimating methods that they will be amended .and changed from time to, time. At the present writing.we would advise, -the use of the simplest possible procedures
where dust control alone is in question. If one wishes to obtain values which can
be compared with published,, data, it is generally necessary to copy with consid
erable care the technic used in the. origi
nal case. This is another way of admit
ting the annoying fact that results by
one method are usually hot comparable to those obtained by another method."
In another place, the report says: "It is very doubtful if any useful purpose is served by determining accurately ex
It would be needless repetition to dis- tre,mely den,se dus.t .con. ce.nt.rat.ion.s--. the
cuss in a technical way the engineering C 5lyt.ex^ sf / r
data .s to how the
phases of dust control. All interested are referred to "Industrial Dust," by Drinker and Hatch, which 'deals comprehensively with the subject; U. S. Bureau of Mines ^Information Circulars 6840 and 6848, by ' Harrington and Davenport, a review of literature on "Prevention of Dust Dis eases" ; U. S. Public Health Service Bul
letin 217, by Bloomfield and DallaValle, on "The Determination and Control, of
Industrial Dust"; Report 29 of the Amer ican Standards Association; and to the U. S. Bureau of Mines for a list of ap proved protective devices..
It may be said that, in general, the engineering., specialist can and will devise the necessary equipment to meet the con ditions specified to him. But the setting of limits of permissible-'dust concentra
tion is not his but the physician's resppn-
than it ^shao_tu.ld b\ e..0rkp,ace ,s much du8ticr "It is probable that any sampling pro
cedure which fixes concentrations in
groups 106 per cent apart is sufficient and that the results of any attempts to come closer to the concentration at the moment of sampling are simply misleading. Thus ranges such as 0-5, 5-10, 10-20, 20-40, etc.,
suffice for dust control." As dust particles in the lungs, are of
the order of 1 micron, with rarely a particle oyer 10 microns,~dust control for
hygienic reasons should.be aimed at parti cles in the size range found to have been breathed and retained.. Again quoting: ". . . if one could avoid use of the dusts of .l micron or less or exclude them from the dust which passes a 325-mesh screen, nearly all dust diseases would be elimi-
. sibility. The engineer is concerned with ' >na e `
keeping dustiness to or below the limits
Dust Elimination
at present considered satisfactory.
bviously, it is better, when possible,
, Methods of Determining Dost
Some dusts '(as lead) are determined by chemical metbods and. the concentra-
to purchase equipment already supplied with exhaust hood, rather, than to haveto wny to fit one to equipment not de signed to be hooded.- Thus-the responsi-
-Metals Section
O 315
bility for potential efficiency is upon tlje Some metal-mining companies have
manufacturer.
? <
gone further, setting th maximum of
There is available comparatively little permissible dustiness, at 5 million particles
information upon which to base the scien per cubic foot.. tific . design of .hoods. The Preventive. Certainly, tljere is a degree of air clean Engineering' Committee of Air Hygiene, liness that is safe, from the standpoint of
Foundation includes m its. recent report concentration of harmful ,,dust But the
a table of minimum air velocities to cap engineer'may find himself in the position
ture certain industrial dusts (for use in of practically being forced to control any
granite cutting grain elevators, paint dust, harmful, or otherwise, if he would
spraying, sand pulverizing and electric. protect his employers against shits at
welding). '
.
common law .and the possibility of award
For protective equipment such as dust of damages to men who have breathed
respirators, air spplied masks, sand blast dust containing little or no free silica. A helmets, and goggles, very complete "in-^ dusty workplace is difficult to defend in formation is available, because of the work court Neither courts noncompensation-
of- the U. S. JBurau of Mines, the Bu boards, and certainly not juries, have
reau of Standards, and the American ? seemed, to be greatly impressed with ,a
Standards Association !h preparing and, low silica dust-count'in an otherwises
issuing specifications to b<f m et''if the duSty atmosphere.
`
equipment is tb* be used under conditions Quoting from rone of the reportsre- '
where approval' is necessary. ^
ferred to: "Each 'state i a unit--a sover
Of course,r ail agree that, where, possi
ble,- dust should be controlled at the source, arid protective' equipment used where this action, cannot be accomplished.
eign--and it., handles its^ problems inits
own way. Uniformity is lacking, although, of course the statutes of many states are similar. The courts of-the various states follow such precedents as^ppeal to them;
Permissible Dustiness . *
consequently, on^any important question,' . there"is likely to be a divergence of opin-
' There are various figures that have been ion among the courts, and often the
and are being u se ra s guides2to permissi courts fall into two or more groups, each
ble dustiness where free silica is p rien t. It .should be. noted, that.many of the data were not determined as the medical re
group <following a difierent0theory.;with
respect to the same legal problem."'
-
O
quirement, but. as being attainable in 0 Workmen's Compensation Acts .
good practice atid apparently satisfactory
from a safety standpoint.
"
Workmens compensation2 acts ' have
In South Africa th .figure is V- milli ben passed i n . 46. states (all *except
gram per cubic meter (or 300 particles 'Arkansas .and Mississippi)* and the Dis
per cubic centimeter, or approximately 8.5 trict of Columbia. These acts are com- .
million j>er cubic foot)-.
. p
pulsory as to . private employers in; 15
Dr. Lanza found in 1917 in the Joplin, states and^jelctive in 3P states.. Insur-
Mo., district that, with good engineering apee to cover -the' risk" is compulsory in/-,
practice, a figure o f 1 .milligram per 100' seven states.
^
' Q
liters of air could be attained.
i A state fund, out of which compensa
The U. S. Public Health Service, in its tion is <paid,_ js maintained in 18 states;
study in the ahthracite region otPehnsyl- in two of these the employer, may, by
vania, found that 50 million particles per ^provingpfinancial responsibility, carry his
cubic'foot with 5 .per cent quartz in the -own risk with' limited* contribution to ,the
coarse dust and 10 milh'on particles per state fund for the expense of administra-
cubic foot with 35 per cent quartz"were tiorir; in I T more of .this group df states
apparently satisfactory -and .often were
attained..
*
The figure of 10-20 million particles per
cubic foot for granite dust with 35 per
cent quartz content is often ,quoted from
t^e employer is. not required to avail himself of the privileges ofethe state fund
and may provide compensation otherwise.. In 28^statea. there is no provision for a*
^state compensation fund. - **..*' ^
the Vermont granite,studies of th U. S. Administration of the compensation a'ct
Public Health Service.
-B
is-vested *in a commission, aboard, or; single .
C*lVf t ~:dRP^BSR!iM5SS
O
316
Twenty-fifth National Safety Congress
commissioner in 40^.states; in six states diseases, which cal! for diagnosis by the acts are administered by the local skilled specialists experienced in that
courts. Again from the report: "The guiding
-.principle in the early acts was the 'award
field.'' O
e
- :'
.-
-j
Examination Before Employment
in g of compensation for accidental injury, * 1. Under Compensation Acts; The
meaning thereby ?traumatic injury.'1 New Mexico Act contains a provision re-
(Traumatic means of. or pertaining to a quiring- the workman, at the time of his
wound or wounds.) "In those years, the employment, or thereafter at the request importance of disability due. to occupa of the employer, to submit himself to; an
tional disease was not generally recog examination,
nized. It however became increasingly^ . The New York Act of 1936, covering
apparent that -'injury* might be -suffered-'' silicosis ana. other dust diseases, provides,
gradually, and that the result of such in, the opening paragraph: .
gradual breaking down of the strength and resistance of the employee was more
"It is hereby declared to be the policy
serious in many instances than traumatic ionfgththeisleagrtiisclaletu, rteo opfrothhiibsi,tsttahtreo,uignh eenvaecrty
winrjeusrtyl.ed Cwbiuthrtsthteheprerofobrlee;minofsocmoensstrtautiensg, lawful means available, any requirement / -
`injury' so as to include disease and bring acso"mapeplsrearenquaipspitleicatnot efmorpleomypmloenytmewnhti-cinh "
disIenaseonweithstinatetheaccdoimsepaesnesdaticoonndaicttiso.n" is any occupation ,,coming within the pur
compensable under the act if caused by view of this article to undergo a medical
the negligence of the employer. Occupa examination.''
tional disease is ^.compensable, to some The North Carolina Act, effective
'"'N eCxotleunmt,biian; 1in6 fsivtaeteosf athnedsethsetatDesisstriliicctosoisf qMuairricnhg^2e6x,am19i3n5a,tioconnbtaoitnhs parioprrotvoiseimonplorye-
is not included among the compensable ment and from time to time during em
diseases; in one state silicosis is the only ployment
occupational disease made compensable.
In the compensation acts of no other
There is a legal obligation on the part states were found provisions with respect
of the employer to provide .3 safe place to to examination prior to the time of em
work, and usually the matter of ventila
tion is featured. The mining laws ap
proach uniformity as to air quantity and
as to equipment for .mechanical ventila
tion.
'
. '
~ The right, at common, law, to recover
-for occupational disease due to negligence
of the employer, is important. I n three
ployment.
. 2. Under Other Statutes: Five states (Louisiana, Maine, New. Jersey,..- New York, and Pennsylvania) have statutes requiring physical examination before an employee is permitted to work under compressed air or in caissons.
states it has been held by the courts that ' the right never did exist; in three states
the right is extremely doubtful; in 12 states it probably exists, although, there is
some doubt; in 12 other states, the right
seems well settled, but is limited in eight of this^group; in the remaining states and
the District of Columbia, no court de cisions can be found .which decide the
question as, to whether or not such com mon law right exists. It^should-again be
noted that occupational 'disease, is com-
Examination During Employment
The fiverstates mentioned in the pre ceding paragraph require periodic exam- .. nations during the course of employment under compressed air or in caissons.
Missouri statutes provide for-examina tion, as Often as once a month, by a. com-, petent licensed and reputable physician, of all employees who come into direct 'contact with certain poisonous agencies or injurious processes.
pensablte in three stales in this last group. "With^ the adoption of Occupational
Disease-Acts? new.imedical problems arise and more adequate provision is required for medical, examination1 and treatment This is especially true with respect to dust
Three states (New Jersey, Ohio and
Pennsylvania) require employers to cause to be examined at least once a month, employees engaged in any work or proc ess exposing them to lead dust, iead :' fumes or lead solutions. .
Examination After Claim for Disability Arises
No two state acts contain identical provisions, but in alnl (iinculuiuding twhieciiDuisitricti. oi1 Columbiiaa>) that *have comoensatfeh acts, there Is n M L T S r animation after claim Tot^disability arises.
In five. states (Kentucky, Massachu setts, New York, North. Carolina, arid West Virginia), definite recognition has been given to the importance of. sohie sort of medical board composed of spe cially qualified physicians and 'surgeons, and charged with the duty of diagnosing occupational disease and qf advising the administrative boar# or commission with respect thereto. The' laws, of these five states are quite different- and should be
studied separately for details, but in each
occupational disease, including .silicosis,
isf compensable- .
^
Th importance o.f roentgefiog.fams in_
thoroygh^physical examination for
pneumoconiosis is well known. This im-.
portance is- reccooggnniziezded^ the Acts of*
New Jersey, New York, North Carolina^
and (West Virginia.
;
<3 Medical Treatment .
In the 17 states (inclungGMaryland) in which occupational disease- is,, to some extent, compensable, the acts usually erititle the" claimant to a limited amount of medical, surgical, and hospital care, measur^d in money 'cost- or length -of time covered by treatment
V
o
These points were-, raised imDthe dis 2. Is it advisable to limit the number?
cussion following .the addresses':
of students perteacher?
l. How much .time is required for Ten students pey instructor is a goojjf!^-
completing a training course? `
Mr. Davison said that " thfc. tu n in g - " '3xSs?hich_gas.es present `the greatest
course int their plant ordinarily cooped a harzards.'in welding? .
---T* o*
period of one and one-half years, bin that Silicon gases are the m ost. harmful.
some students completed it sooner. The
time required depends upon the individ
ual.
w
The risk, however, has largely been over- o
come by mqrtufacturersV.of welding sup
plies.
THURSDAY MORNING SESSION October 8, 1936-.-% ..-5
Metals Section Safety Contest <
Two hundred and two Units Were rcg-o certificates were awa.rded in the Contest.,
istered in the 1936 Contest of the Metals.^. `"The plaques were presented by John B."
Section. During the Contest period^ Gibson, Publicity, Director,. Hawthorne
267,792 employees worked ^561,788,579 works, Western Electric Company, Chi man-hours with an .average" frequency cago, and Vice President for Community
rate of 8.030, a decrease of. 4- per cent , Safety Councils, National-Satiety Council,
from the 1935 rate of 8,354. Ninety-five as fallows: s'
'
'O
units completed the Contest .with -a fre . Steel Mills Division, Groupv A--Conti
quency ra te . below the average, and 8 nental Steel Corporation, Kokomo Divi
per cent of the units finished with per sion,0 Kokomo, Indiana, 4,141,806 man
fect records. Nineteen plaques and eight hours, 12 injuries.
.
!
x>
AV-'
V -
71-
318
Twenty-fifth National Safety Cmgress
Steel Mills Division, Group B and C-- port, Penn., 669,449 man-hours, no in-
Youngstown Sheet and Tube Company, 'juries; Haynes Stellite Co.,. Kdkomo,
South Chicago Works, Chicago, Illinois, Ind., ' 481,481 man-hours, no injuries;
1,198,735 ,,man-hours, 1 injury.
American Rolling Mill Co., Sixth Street
Rolling,-F inishing & Fabricating Divi- Foundry, Ajshland, Kyi, 142,948 man-
won, Group A--The Chase Brass and hours, no injuries.
Copper Company, Cleveland, Ohio, 2,245,- Heavy Machine Shops Division, Group
286 man-hours, 5 injuries.'
A--Lycoming Manufacturing Company,
Rolling, Finishing & Fabricating Diyi- Plant. No. 1, Williamsport, Penn., 1,842,-
sion, Group E ^S ix tied for first place-- 474 man-hours, no injuries.
Revere Copper and Brass, Inc., Baltimore Heavy Machine Shops Division, Group
Division, Baltimore, Md., 1,042,599 man- B--Three tied for first place--C. Hager
hours, no injuries; Central Tube Com- & Sons Hinge' Manufacturing Company,
pany, Ambridge, Penn., 1,037)084 man- S t Ltiuis, Mo.,J 805,007 manrhours, no
hours, no injuries; Continental Steel Cor- injuries; D & B.Pump and Supply Com-
poration, Chapman Price Division, In- pany, Los Angeles, California, 208,253
dianapolis/. Indiana, 833,146 man-hours, mari-hours, no injuries; Noera Manufac-
no injuries; Republic Steel Corporation;: turing Co., Waterbury, ' Conn., '214,792
Grand Crossing Plant,'Chicago, Illinois, man-hours,'no injuries.603,234 man-hours, no injuries; Union_ Light Machine Shop Division-- Three
_Drawn Steel Company,' Beaver' Falls) tied for first place--Western Clock Com-
*Penn., 443,363 man-hours, no injuries; pany, La Salle, III., 5,309,320 nian-Hours,
Lehigh Structural Steel Co.,'Allentown, no injuries; Ilg Electric Ventilating Com-
Penn., 319,353 man-hours, no injuries.
pany, Chicago, 111.,=370,222 man-hours, no
Foundries Division--Three tied for ' injuries; Tite-Flex Metal Hose Company,
first place-- Lycoming Manufacturing Newark, New Jersey, 146,536 man-hours,
Company, Plants Nos. "2 and 3, Williams- no injuries.
New Developments in Safeguarding
By JOH N A. OARTEL
Safety Director, Carnegie-Illinois Steel Corp., Pittsburgh, Pa.
,,
Safety kinks assembled by Mr. Oartel opments in safeguarding and ways of.pro-
during the past year were presented as moting safety. I t included 13 views taken
film strips, 56 views being shown.
' in the Ohio and Chicago District plants
The first strip dealt with prevention of of the Carnegie-Illinois Steel! Corporation
falling of material; with good `housektep- and 13 photos received from, other com
ing; piling>and storage; keeping loose ma- panics, including the Ashlnd and Butler
terial from crane runways and other ele- Divisions of the American Rolling Mill
vated places; and similar safe practices. Company; the Duluth Works of the
I t included 30 views reproduced from... American Steel & Wire Company; the -
photographs which originally appeared in Republic Steel Corporation; the Ford
the National Safety News during the Motor Company; the National Tube Com-
past year.
pany; and^ the Pittsburgh Limestone ..
The second strip illustrated new devl- Company. \
` - <
/ *
` :
'
j
The Thursday session dosed with a - Corpn in the absence of T. H. McKenrond-table discussion, <"Your Hour," led hey, past general chairman of the secby H. J. Griffith, Jones & Laughlin Steel tion, who was unable to attend.
. .'A d jo u r n m e n t
. .