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PRIMER ALKYD, FAST DRY, CORROSION INHIBITING, LEAD AND CHROMATE FREE

contributor authorARMY - MR - Army Research Laboratory, Weapons and Materials Research Directorate
date accessioned2017-09-04T17:44:21Z
date available2017-09-04T17:44:21Z
date copyright07/24/2013
date issued2013
identifier otherEFXPFFAAAAAAAAAA.pdf
identifier urihttp://yse.yabesh.ir/std/handle/yse/167400
description abstractThis specification covers the requirements of a fast drying corrosion inhibiting, low VOC content alkyd primer for coating interior and exterior surfaces of ammunition. This enamel primer is formulated free of lead and chromate (hexavalent chromium), with a maximum VOC content of 420 grams/liter (g/l) (3.5 pounds/gallon (lbs/gal)) as applied. The primer is also formulated free of hazardous air pollutants (HAP-free). This primer is not to be used on tactical or combat equipment. Equipment primed with this material is not to be coated with chemical agent resistant coating (CARC) primers or topcoats.Intended Use: This specification covers an alkyd primer that when reduced as specified shall have a maximum volatile organic compound (VOC) content of not more than 420 grams per liter (g/l) (3.5 pounds/gal (lbs/gal)). This primer is also formulated free of hazardous air pollutants (HAP-free). The intended use is on properly solvent cleaned and pretreated metal surfaces where exposure to lead or chromate pigments is not permitted. This primer is intended for painting the interior of ammunition items; such as bombs, shells, rockets and mines prior to being filled with explosives. It may also be used for the exterior surfaces of these items as a primer. It is not intended for use on the inside of potable water tanks or for marine use. This primer is not to be used with chemical agent resistant coating (CARC) primers or topcoats.
languageEnglish
titleMIL-DTL-11414Fnum
titlePRIMER ALKYD, FAST DRY, CORROSION INHIBITING, LEAD AND CHROMATE FREEen
typestandard
page19
statusActive
treeARMY - MR - Army Research Laboratory, Weapons and Materials Research Directorate:;2013
contenttypefulltext


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