FORD ESB-M33J100-A-2012 ENAMEL ACRYLIC HIGH SOLIDS LOW VOC EXTERIOR TO BE USED WITH FORD WSS-M99P1111-A 《外部涂有低挥发性丙烯酸搪瓷的高固体 与福特WSS-M99P1111-A 一起使用》.pdf
《FORD ESB-M33J100-A-2012 ENAMEL ACRYLIC HIGH SOLIDS LOW VOC EXTERIOR TO BE USED WITH FORD WSS-M99P1111-A 《外部涂有低挥发性丙烯酸搪瓷的高固体 与福特WSS-M99P1111-A 一起使用》.pdf》由会员分享,可在线阅读,更多相关《FORD ESB-M33J100-A-2012 ENAMEL ACRYLIC HIGH SOLIDS LOW VOC EXTERIOR TO BE USED WITH FORD WSS-M99P1111-A 《外部涂有低挥发性丙烯酸搪瓷的高固体 与福特WSS-M99P1111-A 一起使用》.pdf(18页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Material Name Specification Number Date Action Changes Rev 03 2012 03 26 N Status No usage, no replacement N. Benipal, NA 1990 10 23 NB00E10090373004 Revised PAK MP 1983 09 10 CDN1-AF-504579-1 Released CCL, MDM WP 3948-a Page 1 of 18 CREATED FROM THE PDF FILE ENAM
2、EL, ACRYLIC, HIGH SOLIDS, LOW VOC, ESB-M33J100-A EXTERIOR ENAMEL, ACRYLIC, HIGH SOLIDS, LOW VOC, ESB-M33J100-A2 EXTERIOR, REDUCED VISCOSITY NOT TO BE USED FOR NEW DESIGN 1. SCOPE The materials defined by these specifications are low volatile organic compound (VOC) modified thermosetting acrylic resi
3、ns which are pigmented to yield a colored, glossy, durable enamel suitable for exterior use. 2. APPLICATION These specifications are released for paints used as the final color coat on all exterior car body parts. They shall be satisfactory for use over specified primers, sealers or other enamels, a
4、s in repair or two-toning operations. ESB-M33J100-A The material defined by this specification is supplied at normal viscosity and solids level as shown in this document. ESB-M33J100-A2 The material defined by this specification is supplied with reduced viscosities such that they are ready for use i
5、n the assembly plants. The reduced viscosities and associated reduced solids levels shall be agreed upon by the supplier, the affected assembly plant, Body and Assembly Paint Operations and NAAO Production Purchasing prior to delivery of the materials to the respective assembly plant. The materials
6、shall meet all other requirements of the parent (“A“ level) specification. 3. REQUIREMENTS 3.1 STATISTICAL PROCESS Suppliers must conform to the requirements of Ford Quality System Standard Q-101. A mutually acceptable Control Plan as described therein is required for material/source approval. Appro
7、priate statistical tools must be used to analyze process/product data so that variation in the final product is continuously reduced. ENGINEERING MATERIAL SPECIFICATION ESB-M33J100-A/A2 WP 3948-a Page 2 of 18 3.2 COMPATIBILITY There shall be compatibility between all topcoats, primers, sealers and a
8、dhesives utilized in the assembly plant. This will allow for normal production processing of these materials. Refer to the Sealer Application Manual for the description of specific sealers/adhesives. 3.3 COMPOSITION 3.3.1 Vehicle Non-Volatiles The modified thermosetting vehicle system shall be durab
9、le, and yield a smooth appearance with high gloss and good levelling. 3.3.2 Pigmentation Pigments shall be of exterior automotive quality, and have required durability and lightfastness. The pigment blend shall provide a satisfactory color match to the Ford master panel on file. 3.3.3 Ultraviolet Li
10、ght Absorber(s)/Stabilizer(s) All colors shall be supplied with a UV-light stabilizer package as necessary to promote long-term exterior durability and to prevent topcoat delamination from electrodeposition primer or spray primer-surfacer. 3.3.4 Volatile Components The proportions of solvents consti
11、tuting the volatile portion shall be selected such that the enamel will display satisfactory levelling upon spray application. The volatility of the solvents is to be so chosen that the specified film thicknesses can be obtained without the occurrence of paint sagging and with satisfactory freedom f
12、rom roughness or dry spray. The volatile portion shall contain sufficient active solvents to give satisfactory adhesion when the enamel is applied over a previously baked coat of the enamel. 3.3.4.1 Resistivity 0.05 to 4.00 megaohms Volatile solvents and other components affecting electrical conduct
13、ivity shall be adjusted such that the resistivity at application viscosity shall be within specified limits and result in optimal sprayability characteristics. ENGINEERING MATERIAL SPECIFICATION ESB-M33J100-A/A2 WP 3948-a Page 3 of 18 3.3.5 Volatile Organic Compound at Application Viscosity (VOC) Th
14、e percent volatile is determined per ASTM D 2369 except that the oven exposure time shall be 60 minutes at 110 C instead of 20 minutes. The kg/L is determined per ASTM D 1475. Color: VOC (max) (kg/L) Light metallic colors 0.52 Medium metallic colors 0.52 Dark metallic colors 0.49 Black 0.46 All dark
15、 solid colors 0.49 (less than 20 % TiO2) Reds, maroons, oranges 0.47 (less than 20 % TiO2) Medium dark colors 0.44 (20 - 80 % TiO2) Medium colors 0.44 (80 - 95 % TiO2) Light colors 0.44 (95 % or more TiO2) White 0.43 3.3.6 Specific Composition The supplier shall furnish such data upon request. 3.4 P
16、HYSICAL PROPERTIES 3.4.1 Viscosity (Package) (FLTM BI 111-01) Viscosity of material shall match value shown on Initial Sample Report within range of +/- 5 s on #4 Ford Cup. NOTE: At application viscosity, the enamels shall be in compliance with VOC requirements. ENGINEERING MATERIAL SPECIFICATION ES
17、B-M33J100-A/A2 WP 3948-a Page 4 of 18 3.4.2 Viscosity Stability 3.4.2.1 Shelf Stability (Test is conducted at package viscosity.) After standing for 90 days at a room temperature of 26 +/- 1 C, material must be free of settling which cannot be dispersed by normal agitation. A viscosity increase of m
18、ore than 15 s on a #4 Ford Cup is not permitted. 3.4.2.2 Accelerated Shelf Stability (FLTM BI 102-03, Test is conducted at package viscosity.) The material must be free of settling which cannot be dispersed by normal agitation after standing for 16 hrs at 60 +/- 2 C. A viscosity increase of more tha
19、n 15 s on #4 Ford Cup is not permitted. 3.5 PREPARATION OF TEST PANELS 3.5.1 Substrate Cold rolled, unpolished 100 mm x 300 mm x 0.71 mm steel panels with a Class “1“ finish are required. They shall be coated using the current production phosphate process. 3.5.2 Electrocoat Primer 3.5.2.1 Medium-Bui
20、ld Cathodic Electrocoat Primer Panels shall be coated with current production Medium-Build Cathodic Electrocoat Primer to achieve a dry film thickness 20 - 23 micrometre. The bake schedule is 10 minutes at 182 C metal temperature. 3.5.2.2 High-Build Cathodic Electrocoat Primer Panels shall be coated
21、 with current production High-Build Cathodic Electrocoat Primer to achieve a dry film thickness of 30 - 33 micrometre. The bake schedule is 10 minutes at 182 C metal temperature. When an evaluation is conducted over this electrocoat primer, panels shall be prepared either with or without spray prime
22、r in accordance with assembly plant practice. ENGINEERING MATERIAL SPECIFICATION ESB-M33J100-A/A2 WP 3948-a Page 5 of 18 3.5.3 Spray Primer Using electrocoat-primed panels, apply current production primer-surfacer by spray to a dry film thickness of 18 25 micrometre. The color and gloss of the spray
23、 primer shall be consistent with spray primer currently used in production with the respective topcoat(s). Bake primer 30 min at 163 C ambient (minimum 20 minutes at 163 C metal temperature) for adhesion tests (para 3.7.4) and 20 minutes at 149 C ambient (minimum 10 minutes at 149 C metal temperatur
24、e) for all other tests. 3.5.4 Enamel Apply enamel to a dry film thickness of 45 - 55 micrometre by spray. Flash for two (2) minutes. Bake per standard bake of para 3.5.6.2 (17 minutes at 130 C ambient with a minimum of 10 minutes at 130 C metal temperature). 3.5.5 Catalyzed Repair Prepare panels per
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