FORD ESA-M62J13-B-2012 PAINT WATERBORNE ANODIC ELECTROCOAT ACRYLIC ENAMEL TO BE USED WITH FORD WSS-M99P1111-A .pdf
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1、 ENGINEERING MATERIAL SPECIFICATIONMaterial Name Specification NumberDate Release No. Release/Revision1987 06 30 CDR2-171100-C9 ReleasedWP 3948-a Page 1 of 4 PAINT, WATERBORNE ANODIC ELECTROCOAT - ACRYLIC ESA-M62J13-BENAMEL1. SCOPEThe mat erial defined by this specification is a heat curing, water b
2、asedanod ic electrocoating acrylic enamel and associative make-up feedcomponents.2. APPLICATIONThis material was released originally for use as a prime r and/or final coatfor wheels.3. REQUIREMENTS3.1 STATISTICAL PROCESSSupplie rs must conform to the requirements of Ford Quality SystemStand ard Q-10
3、1. A mutually acceptable Control Plan as describedtherein is required for material/source approval. Appropriatestatist ical tools must be used to analyze process/product data sothat variation in the final product is continuously reduced.3.2 COMPOSITION3.2.1 Non-Volatile(FLTM BI 2-1)3.2.1.1 Charging
4、Material Weight, min 40%3.2.2 Volatile Deionized Water3.3 WEIGHT PER LITRE AT 22 EC3.3.1 Charging Material 3.75 - 3.80 kg3.4 STABILITY(FLTM BI 16-2)No mo re than 5 % increase in viscosity after 72 h beyond initialviscosity of material reduced to 7 - 8 % solids.ENGINEERING MATERIAL SPECIFICATIONESA-M
5、62J13-BWP 3948-b Page 2 of 4 3.5 INFRA RED SPECTROPHOTOMETRY (IR), EMISSION SPECTROSCOPY (ES), ANDTHERMOGRAVIMETRIC ANALYSIS (TGA)Ford Motor Company, at its option, may conduct IR, ES, and TGA ofmaterial/parts supplied to this specification. The IR spectra andthe rmograms established for initial app
6、roval shall constitute thereferen ce standard and shall be kept on file at the designatedmaterial laboratory. All samples shall produce IR spectra andther mograms that correspond to the reference standard when testedunder the same conditions.Prepare the IR sample by scraping the cured paint from a t
7、est paneland mixing with infrared quality potassium bromide. Pulverize thesample with a mortar and pestle or a mechanical mixer to ahomogeneous powder and press into a pellet with a hydraulic press at11.7 MPa. Place the pellet in the infrared beam and scan.3.6 THROWING POWER, min(FLTM BI 20-2, EC)Be
8、fore Salt Spray 135 mmAfter 240 h Salt Spray Exposure 70 mm3.7 PANEL PREPARATIONPre pare panels per FLTM BI 20-1. When this material under test isspecifically for use on other substrates, supplementary tests shallbe run, using panels or parts made from the substrate and processedby an approved produ
9、ction method prior to painti ng. All panels shallbe conditioned for 72 h at +/- 1 EC or 16 h at 43 +/- 1 EC prior totesting.3.8 FILM CHARACTERISTICS3.8.1 Thickness 19 - 20 Fm(FLTM BI 17-1)3.8.2 Salt Spray Resistance, min 360 h(FLTM BI 3-1)No mo re than 3 mm rust or blister creepage from a linescribe
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