Document XRk1QjNw7dVMDa8xvpkwDvreK
CH EM -W EAR Inc.
Telephone: GRamercy 5-2308
740 BRO ADW AY, N EW YO RK 3, N. Y.
December 22, 1949
Dr. R. A. Khoe Kettering Laboratory Dniv. Cincinnatti College
of Medicine Dincinnatti 19, Ohio
Dear. Dr. Kehoe:
At the suggestion of Dr. Clyde Berry, of Esso Standard Dll, New Jersey, I am writing to you regarding clothing which we Delieve may be de-contam.ina.ted after contact with lead, tetro dethy1 .
According to the opinion of the chemists of Standard Oil, a 2Cffo solution of HCL at a boil should make sufficient chem ical change in the lead to make it soluable in ordinary washings. Our tests show very little deterioration at the end of 20 hours submerssion in a 3 solution of HCL at lOOo C.
It is our b e l i e f that if this t y p e fa b r i c was to be
used in clothing for your workers, the contaminated clothing could be subjected to a xvashing in HCL and then laundered by ordinary methods. This should mean a considerable savings in dollars and tents, due to the lower need of replacement garments.
We are taking the liberty of sending.you our chemical report. We are also having the Mill send you some sample fabric ifor testing. We hope that this will be of interest to you, and that we can have the pleasure of working with you on this problem .in the future.
Very sincerely yours,
KFS/pd
Kt 0020316
I
B e t t e r Fa b r i c s T e s t i n g B u r e a u . In c . n e w y d r k
Chem-Waar, Inc. 740 Broadway New York City
CCG-1482
REPORT OF EFFECT OF SPECIFIED CHEMICALS ON "CHEM-WEAR" FABRIC
toe heavy duck identified as "Chem-Wear*' Was submitted for tests to determine the resistance of this jnmersion in various chemical reagents. Tests for visual appearance, shrinkage and deterioration at ind concentrations showed the followings
igaggaifi
)RIGINAL [CONTROL)
Cono
Tempt
Percent Shrinkage Warp Fill
jog--
--- - --
----
IsnaiJA,. Siieng&L. In Pounds Warn Fill-
391 383
Percent Loss Or Gain Ip Strength t o mir
2--
----
LCETIC ICID
100 90
1.0/ 0.0
356 363
9.0- 5.2-
LEACHED [n a c l o 2)
-- -- -- - 0.0
0.0
408 359
4.4/ 6.3-
ALCIUM HL0RIDE
50
100 0.0 0.0
373 379
4.6- 1.0-
Percent tien.. Warp Fill-
82 47
Percent
Rangas-- Man Or Loss Earn m i s
iSE_
------ -- -
89 41 8.5/ 12.8-
85 43 3.7/ 8,5-
82 48 0,0 2,1/
* Refer to color identification chart for staining or approximate appearance. - Equals loss. 4 Equals gain.
ikaggnka
I__ . less*
fisaa*
l ![io.o
' Tensile
Emaa&~. jlkaagth.
i.aEganfe.-
lam EUJh tee ri,n-
AM--
ing
.CARBON TETRA CHLORIDE
100 45
0.0 0.0 383 370
CHLOROFORM 100 55
0.0 0.0 380 361
CHROMIC ACID
CHROMIC ACID
CHROMIC ACID
CHROMIC ACID
CHROMIC ACID
CHROMIC ACID
CYCLO-
HEZMOHE
50 100 0.0 0.5/ 131 118
50 50 0.0 0.0 352 315
50 25
0.0 0.0 362 331
25 100 0.0 0.0 232 218
25 50
0.5/ 0.0 376 322
25 25
0.5/ 0.0 381 336
100 100
# Refer to color identification chart for staining or appj - Equals loss. / Equals gain*
P^cenJL. Cain In,.. 2Q2 tX 11=
Percent IHanga-T.
___ I m m jJJw
lag__
Psrceat Elonsa- ....
tlon.Galn Or Loss Warp Fill
ing-..
& m M 2 S -- _____
After. 20 Hour
Immersion
*Chnnfre0 Frotu
MfizMr ration
Original Color To
2,0- 3.1- 81 2,8- 5,8- 85 66,5- 69.2- 15 10.0- 17.8- 82 7.4- 13.6- 75 40,7- 42.6- 82 3.3- 15.9- 88 2,6-- 12.3- 72 100.0- 100.0- ----
oximate appearance
36 1.2- 23.4- Hone
Slightly lighter
42 3.7/ 10.6- None
Slightly lighter
11
81.7- 76. 5 Stiffer
Blaokish.
j
Brown
44 0.0 6.4- None
Chocolate Brown
32 8.5- 31.9- None
Golden Brown
47 0.0 0,0 None
Blaokish Brown
40 7.3/ 14*9-- None
Chocolate Brown
34 ---
12.2- 27.6- None
Golden Brown
100.0-100,0- Decomposed Amber Gelatinous Mass
Bsaggafea
CYCLO HEXANONE
% Temp. Gone.
100 50
Percent. Shrinkage Warp Fill-
ine
** ""*"
Tensile
Strength In Pounds Warp m i z
ins -.
Percent Loss Or Gain In &SQSt Warp fill-
ine .
Percent El onera-
tion l a m Flll-
i g-
Percent Eloneation Gain Or L o s s .
S m i = iru?
10 0 .0- 10 0 ,0-
100,0- 100,
CYCLO HEXANONE
100 25
0.5/ 0.0 208 302 46.8 2 1.1- 38 34 53.7- 27.6
FERRIC
70 100 1.0/ 0.0 296 306 24.3- 20,1- 38 38 53.7- 19.1
CHLORIDE
FERRIC
70 50
CHLORIDE
0.0 0,0
360 360
7.9- 6 ,0- 82
a
0.0 12 .8
FERRIC
70 25
CHLORIDE
0.0 0,0 365 374 6,7- 2.3- 79 45 3.7- 4.3-
FERRIC
25 100 0.5/ 0.0 338 3X8 I3.6-- 9 *0- 78 41 4.9- 12 .8
CHLORIDE
FERRIC
25 50
CHLORIDE
0.0 0.5/ 363 378 7.2- 1.3- 84 48 2.4/ 2.1/
FERRIC
25 25
CHLORIDE
0.0 0.0 390 387 0 *3-- 1 .0/ 86 46 4.94/ 2.1-
* Refer to color identification chart for staining or approximate appearance. - Equals loss. / Equals gain.
K Z 0020320
Reagents
FORMAL DEHYDE GASOLINE (MIITE)
% Temp,. SfiiPQt 2.Qq__
Percent Shrinkage
lEB m i r lfig=_
Tensile Strength
IslEsuM s Warp Fill-
ine
AO 90
1.0/ 0.5/ 3A 382
100 68
0.0 0.0
380 368
HYDRO-
A8 100 1.5/ 1.5/ 360 3A6
BROMIC ACID
HYDRO
38 100 1.0/ 1.0/ 393 37A
CHLORIC ACID
HYDRO
100
FLUORIC ACID
------ , --- . --
386 37A
HYDRO
50
---
389 37A
FLUORIC ACID
HYDRO
25
FLUORIC ACID
HYDRO
15
FLUORIC ACID
-- -- 388 372
---
<"*-" **
, 390 380
HYDRO
10
FLUORIC ACID
--
---- --
390 381
LIGRQIN
100
(PET. ETHER)
METHYL ETHYL 100 KETONE
AO 100
0.0 0,0 ----
378 392 ----
METHYL ETHYL 100 KETONE
50
0.0 0,0
259 310
* Refer to color identification chart for staining or
Percent Loss Or
Strength
: HU-
1*8- 03.-
2,8- 3.9-
7,9- 9.4-
0.5/ 2.3-
Percent
Percent
ELonea-
iAfinJ&flin
tlP-S__
Or Loss
Warn Pill- Warn Fill-
ins .
ins
Appearance
After ^0 Hour___
Immersion
Visible. Changea
Deterie- From Original
ration
Color To
86 45 4.9/ 4.3- Hone
Noticeably* :
lighter
i
82 41 0,0 12,8- None
Slightly lighter
| i
82 39 0.0 17.0- None
Light Brown
1
89 46 8.5/ 2.1- Hone
Brown
1.3- 2.3- -- --
--- --
Hone
No change
0,7-- 2.3- --
----
Hone
No change
0.8- 2.8- --
---- --
None
No change
0
N> 1
0,8 --
,,
-- -- - Hone
No change
0.2- 0.5
--
--
------ - --
Hone
No change
3.3- 2.3/ 90 100,0- 100.0- ------ -
35
------- .
9.8/ 25.6- None
Slightly lighter
100.0- 100.0- Decomposed Brown Mass
33.7- 19.1- 79
37
approximate appearance.
3.7-
21.2-
Some de composi tion
Lighter. Orange warp thread at partially
\
\
HE 0020321
Rg&ggQtg
%... Temp. pong.
Esrsent__
Warp 1U s ing.
METHYL ETHYL 100 'k e t o n e
25
0.5/ 0.0
NITRIC ACID
70 80
--- --
NITRIC ACID
NITRIC ACID
70 50 70 25
***-*----
Tensile
St eBP gflL.
In Pounds
S&B m Jb Am _
372 343
EgKgSBfr., Lop_Q-. &&2L&* && lu x t m=
ABS--
4.9- 10.4-
Percent
tion
it o
90
i r uz 39
--
100.0- 100.0- --
--
----
100.0- 100.0- --
--
--
----- -
100,0- 100.0- --
---
Percent ElongafelP?}..gala or Loss Warn m i =
ipg
9.8/ 17,0
100.0- 100.
100.0- 100,
100,0- 100,
NITRIC ACID
30 80
0.0 0.0 355 341 9.2- 11,0- 78 45 4*9- 4.3-
NITRIC ACID
20 80
0.0 0.0
362 351
7 .4 - 10.2- 75
a
8.5- 12.8
NITRIC ACID
20 50
0.0 0,0 375 365 4.1- 4.7- 90 45 9*8/ 4.3-
NITRIC ACID
20 25
0.0 0.0 386 384 1 .3 - 0.3/ 86 45 4.9/ 4.3-
NITRIC ACID
5 80 0.5/ 0.0 362 360 7.4- 6.0-- 94 48 14.6/ 2.1/
NITRIC ACID
5 50 0.5/ 0.0 380 377 2 .8 - 1.6-- 80 45 2.4- 4.3-
NITRIC ACID
5 25 0.0 0.0 390 381 0.3- 0.5- 82 46 0.0 2.1-
* Refer to color identification chart for staining or approximate appearance. - Equals loss. / Equals gain.
.1
K*" 0020322
Baaggnftp
1 ___ Cone.
PLEIC ACID
100
OXALIC ACID
50
PERCHLORO- 100 ETHYLENE
PHENOL
5
100 100 100 100
'.
EscsfirtL. Shrlfikflge Barp Eillr
lag--
0.0 0.5/
Tensile Strength. In Pounds t o mir
iS_
372 399
P9.rp.SBt,.. Loss Or Gain, In Strength
t o mir lag......
Percent
gjoMz tign-,.. Warp m i r
-Ing.
4.9- 4.2/ 82
49
figment M Elonga-
Or Loss t o mir
IM.
0.0 4.3/
1.5/ 0,0
368 388
5,9- 1.3/ 90
45
9.8/ 4.3-
1.0/ 1.0/ 355 359
9.2- 6.3- 84
40
2,4/ 14.9
0.0 0.0
209 204
46.5- 46,8- 72
35
12.2- 25,6
PHENOL " 5 50 1.0/ 0.5/ 240 249 38.6- 35.0- 75 33 8,5- 29.8
PHENOL 5 25 0,0 0.0 302 340 22,7- 11.2- 80 35 2.4- 25.6
PHOSPHOPJC 85 ACID
100 0.5/ 0.5/ 388 361
0,8- 5.7- 85
45
SILVER
30 100 1.5/ 0.5/ 105 142 73.0- 62.9- 5
NITRATE
5
SILVER
30 50 0.0 ' 0.5/ 347 362 11.2- 5.5- 82
NITRATE
40
SILVER
30 25 0.0 0.0 358 371 8.4- 3.1- 84
NITRATE
46
SODIUM
50
BICHROMATE
100 0.0 0.0
351 355
10.2- 7.3- 86
43
* Refer to color identification chart for staining or approximate appearance. - Equals loss. / Equals gain.
3.7/ 4.393.9- 89.5 0,0 14.9 2,4/ 2.14.9/ 8.5-
K 0020323
Ressents
SODIUM HYDROXIDE
It___ Temp. Cone. C,
50 100
Percent. Shrinkage. EaiP Fill
signsagai
0.5/ 0,0
Tensile Stesng&b.
Warn Fillins
320 310
Percent LgBP.OiL. Pain fri. Strength Warn m i =
im
18,2- 19.1-
Percent
gisngto tion Warp Fill-
ing .
Percent Elonga- .
Or Loss Eli ine
S3 34 1*2/ 27*6
SODIUM
30 100 0,0 0.0 362 344 7,4- 10.2- 83 44 1.3/ 6.4--
HYDROXIDE
SODIUM HYDROXIDE
5
100 0.0 0,0 373 353 4*6-- 6.5-- 86 44 4.9/ 6,4-
STEM ,
0.0
(15 lbs. Pressure One Hour)
0.0
405 390
3,6/ 1.8/ 90
a
9.8/ 12.8
STODDARD SOLVENT
100 90
0.5/ 0.0 368 350 5.9- 8.6- 82 36 0.0 23.4
SULFURIC
ACID
96 100 |~--- ' _
... 100,0- 100.0-
-- - ; 100.0- 100.
SULFURIC 96 50 ACID
--- --
-- --- 100.0- 100.0- -- -- - 100.0- 100.
SULFURIC 70 100 -- ACID
--* --
----
100*0- 100.0-
---- --
r
100,0" 100.
SULFURIC 70 50 ACID
0.0 0.0 330 355 15.6- 7.3- 80 40 2.4- 14*9
SULFURIC 25 100 0.0 0.0 377 363 3.6- 5.2- 82 48 0.0 2.3/ ACID
* Refer to color identification chart for staining or approximate appearance. - Equals loss* / Equals gain.
fiaigggfca
SULFURIC ACID SULFURIC ACID
SULFURIC ACID
0020324
1 ____ Temp, Cone. ^ cT
Percent Shimkage
Warp m i s
25 50
0,0 0.0
Tensile Strength In Pounds Warp m i s
In g--
386 365
Percent hoes or . fi& lB-lSL
Warp Fill1B&--
1.3- 4.7-
Percent Eloneation
Warp m i s .4,n e....
Percent
Ilaaea: tion Gain Or Loss Ep m i =
84 48 2.4/ 2.1/
5 100 0 .5/ 0.0 389 362 0.5- 5.5- 78 42 4.9- 10,6
I o
5
50
0,0 0,5/ 384 364
1.8-
86 46 4.9/ 2.1--
* Refer to color identification chart for staining or approximate appearance. - Equals loss. / Equals gain.
EVALUATION OF TEST RESULTS
'
K & 00203
Results of above tests show the reagents have the following effect on the "Chem-Wear" fabri ration, elongation, visible deterioration and change in shade from the original color after hours at the specified temperatures and concentrations.
The "Chem-Wear" fabric showed NO SHRINKAGE whatsoever and practically no change in dimensio hour immersion in each of the above reagent concentrations at spedified temperatures, after of Steam pressure for one hour or after prolonged bleaching at boiling temperature. Slight material was noted after immersion in some of the reagents but this gain in no instance exc that the fabric possesses dimensional stability to above conditions.
Tests show the fabric to possess excellent resistance to decomposition by most chemicals wi total decomposition at higher concentrations and temperatures, and only four others showing excess of 20$ as evaluated by tensile strength tests after the 20 hour reagent immersion. fabric was totally decomposed by only the following reagents at the following concentration
Concentration
QC, Temperatu
Cyclohexanone . Cyclohexanone
Methyl Ethyl Ketone Nitric Acid Nitric Acid Nitric Acid Sulfuric Acid ' Sulfuric Acid Sulfuric Acid
100 100 100
70 70 70 96 96 70
100 50 .
100 80 50
25 100
50 100
In addition to the above complete deterioration the "Chem-Wear" fabric also showed deterior of 20$ or over by treatment with the following reagents:
Concentration
C. Temoeratu
Chromic Acid Chromic Acid . Cyclohexanone Ferric Chloride Methyl Ethyl Ketone Phenol Phenol Phenol
50
25 100
70 100
5 5 5
100 . 100
25 100
25 100
50 25
The other 44 determinations on the remaining 18 reagents showed deteriorations below 20$ with th loss in some instance no doubt being due to strength variations in the fabric itself rather than deterioration as the results reported are based on the average of two warp and two filling break of sufficient fabric to make a complete strength test.
The Bureau would rather report the strength average on a greater number of breaks as the results may be either higher or lower due to, strength variations on this type fabrio than would be found averaging a greater number of tensile breaks.
Elongation tests showed either slight increases or decreases in elongation in the majority of in noted, however, that a stiffening of the material by the reagent also decreased the pliability a
An examination of the reagent treated samples showed that many of the reagents stained or carbon with the alteration or change in shade being as noted in report.
Visible deterioration was shown by only several samples and was discerned mostly by stiffness or and discoloration of individual threads by Cyclohexanone or Methyl Ethyl Ketone.
A summary of test results show the followings
'
That the "Chea-Wear" fabric does not shrink after immersion for 20 hours in 26 specifi reagents at various concentrations and temperatures.
That only four of the specified reagents totally decomposed the fabrio. That only fou other reagents will deteriorate the "Chom-Wear" fabric in excess of a 20$ loss in strength and this occurring only at higher concentrations or a combination of high concentration and temperature.
That the reagents in most instances do not appreciably affect the fabric's pliability and hand, but that a stiffening or loss of pliability also showed a loss in elongation of the fabric as well as in tensile strength.
April 27, 1949
BETTER, FABRICS TESTING BUR
fS <
B. Rioux, Chemist
2Miii2SiS2I XfflftflUQ Strength
METHOD OF TEST
.
The fabrics were conditioned for fou
hour8 in an atmosphere of 65% relati
humidity at 70 degrees Fahrenheit temperature before testing.
Made by the strip method where each test specimen was stripped to one in or 76 ends in the warp and 24 picks the filling, subjected to the variou reagents as shown above and then bro three inches between jaws using thre inch front jaws, three inch back jaw with speed of moving jaw 12 inches pe minute.