Document x5aVZm05KN4xgGD3nypyek86E
E. I. DU PONT DE NEMOURS & COMPANY KREBS PIGMENTS DEPARTMENT 256 VANDERPOOL STREET NEWARK, NEW JERSEY
Serial No. Copy No.
^-44-62 /
A^ ? --<?'4 ` --- c5.,,
Period Covered:
NEWARK PLANT PIGMENT COLOR RESEARCH REPORT
Fisal Beport
Miniature Panel Series #66 Modificationoo*fZ"in*c**XSelalalmt and Phosphate February, 1?43 - BovesOser, 1943*
FILE: DATE:
143*54 10/21/44
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N37939
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Serial Ho. KH-44-62 Copy So* 1
Copy tot
#1 * Suaerleal File 2 - Beseareb Office 3 * library File 4 * Faint laborraattoorr;y 5 - Mr* F* E. Bolton, Stearic . 6 - Imperial Chemical Industries, ltd*
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9 - Hr. J. F* Baity, Wilmington (XCZ
10 * Or* 0* D Patterson, Ixp*Sta.,Wilington
11 * * 8
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12 - Research Suggestion File (#205)
13 - * 14 - Extra
* * (#405)
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Final Report titles Miniature Panel Series #66
Evaluation of Ammonia Salt and Phosphate Modification of Zlne Yellow Period Covered* February, 1943 Hovember, 1943
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The promise shown by ammonium lmaa phosphate as & metal protective pigment opened conjecture as to the effect of ammonia end phosphate modifications of M32-B on the performance of sine yellow in. metal primers. Research suggestion #265 proposed phosphate! sine yellow In the expectation that the phosphate ion would contribute to the rust infclbiilve quality of the pigment. " Suggestion #405 recommended the ammonium salt of sine yellow to replace the potassium salt manufactured at present.
Sf. . A aeries of alma yellows embodying the suggested modifications was prepared in the laboratory, based on X-232-D with-the necessary alteration in the formula to produce the followiI pigmentst
285-431 T-232-B (1554) control
B----- Hi* sa'lt of` sine yellow
C K*4
(*8a free)
0 Phosphate! sine yellow
S "8a* salt of sine yellow (K* free)
A partial evaluation of these pigments was made in the miniature panel series 66. Further evaluation was carried out in the paint laboratory exposure series 6747*
C08SLP81QBIt
The *884* salt and the phosphate! sine yellow demonstrated no advantage over S-232-0. In the single pigment primers, the suggested modifications were definitely inferior to the standard material; in combination with iron oxide and extender their per formance was equal to that of T-232-D.
The exposure curves of the sine yellow/FeyOe/Jasperine primers indicate that the sodium free sine yellow is markedly superior to the standard Y-232-D. However, the result must be weighted by the fact that the T-232-0/Fe203/7asperine showed abnormal behavior in that previous experience demonstrated improved performance of the combination with Fe^OVfasperlne as compared with single pigment sine yellow primer; in mis ease the combination appears to have impaired the performance of T-232-0.
The exposure curves of the primers exposed in this series have been plotted at me end of this report* The data have not been summarised in tabular form as the curves were believed to be self explanatory.
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Yh* parti*! analysis of the modified sine yellows Is tabulated below*
985-43A > C 1
Y-(K1554) Control *aax* ss^t W4*alt (*8a free) Phosphate modification *Ba* salt
1_>3 3.3P 0.14 0.83 0.71 2. SI
.X
the high chloride content of the sodium salt makes question** able the evaluation of that sample. Its poor behavior may be Inherent or may be due to the abnormally high content of corrosive containment.
mmvmm mum* The following primers were ground in one half pint ball
mills with steel ballet
i
Primer
958-70A B C 0 f 6
a
z s
958-43A, Y-232-D Control B, bRHab salt. C, K salt (Ha free) B, Phosphate 1/lodlflcation
S. BNa salt
958-43A?Pe|03/Jasperine
fl/ *
E/
Fa03/Jasperlne
100 ft ft a
60/20a /20 a
ft
50/50
In every case the pigment volume was 4.0$ In KV-15 (50/50 alkyd/ B.L.O.).
Duplicate l9 x 3* cold rolled steel panels were sanded and solvent wiped then coated with the test primers using the *Bry Brush Technique9, (0.2 mil dry film),
The exposure was carried out in the roof moisture condensa tion box: sun and weather during the daylight hours with positive moisture condensation at night.
For complete exposure details refer to notebook 958, experiment 70.
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INS* RATISS
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