FORD WSS-M6J152-B5-2008 PRIMER SURFACER MODIFIED POLYESTER CHIP AND SCRATCH INHIBITING REDUCED VISCOSITY FOR UNIVERSAL USE WITH WATERBORNE OR SOLVENT BORNE BASECOAT SYSTEMS TO BE .pdf
《FORD WSS-M6J152-B5-2008 PRIMER SURFACER MODIFIED POLYESTER CHIP AND SCRATCH INHIBITING REDUCED VISCOSITY FOR UNIVERSAL USE WITH WATERBORNE OR SOLVENT BORNE BASECOAT SYSTEMS TO BE .pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M6J152-B5-2008 PRIMER SURFACER MODIFIED POLYESTER CHIP AND SCRATCH INHIBITING REDUCED VISCOSITY FOR UNIVERSAL USE WITH WATERBORNE OR SOLVENT BORNE BASECOAT SYSTEMS TO BE .pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions 2008 05 30 Revised NO TECHNICAL CHANGES MADE; Inserted 3.0; Deleted 3.1, 3.2, 3.10, 3.12 & 4 1997 12 01 Released T. Weingartz Printed copies are uncontrolled Copyright 2008, Ford Global Technologies, LLC Page 1 of 9 PRIMER SURFACER, MODIFIED
2、POLYESTER, CHIP AND WSS-M6J152-B1 SCRATCH INHIBITING PRIMER SURFACER, MODIFIED POLYESTER, CHIP AND WSS-M6J152-B2 SCRATCH INHIBITING, REDUCED VISCOSITY PRIMER SURFACER, MODIFIED POLYESTER, CHIP AND WSS-M6J152-B3 SCRATCH INHIBITING, FOR USE WITH WATERBORNE BASECOATS PRIMER SURFACER, MODIFIED POLYESTER
3、, CHIP AND WSS-M6J152-B4 SCRATCH INHIBITING, FOR UNIVERSAL USE WITH WATERBORNE OR SOLVENT BORNE BASECOAT SYSTEMS PRIMER SURFACER, MODIFIED POLYESTER, CHIP AND WSS-M6J152-B5 SCRATCH INHIBITING, REDUCED VISCOSITY, FOR UNIVERSAL USE WITH WATERBORNE OR SOLVENT BORNE BASECOAT SYSTEMS 1. SCOPE The materia
4、ls defined by these specifications are polyester primer surfacers, modified with either urethane or acrylic resins, possessing good gloss, enamel holdout, and protect against chip damage. They are formulated to cure at 135 C min metal temperature. 2. APPLICATION These specifications were originally
5、released as guidecoats over currently approved cathodic electrocoat primer, conforming to performance requirements or related specifications, for both steel and primed plastic substrates. Application is targeted for high efficiency electrostatic equipment. Automotive exterior baking enamels, solvent
6、 borne basecoats, and/or water borne basecoats will be applied over these primers in exterior body applications. WSS-M6J152-B1, B3, and B4 The material defined by these specifications is supplied at normal viscosity and solids level as shown in this document. WSS-M6J152-B2 and B5 The material define
7、d by these specifications is supplied with reduced viscosity such that they are ready for use in the assembly plants. The reduced viscosity and associated reduced solids levels shall be agreed upon by the supplier, the affected assembly plant, Global Paint Engineering, and Production Purchasing prio
8、r to delivery of the materials to the respective assembly plant. 3. REQUIREMENTS Tests shall be made on the basis of comparison with approved production material applied and tested under identical conditions. ENGINEERING MATERIAL SPECIFICATION WSS-M6J152-B1/B2/B3/B4/B5 Printed copies are uncontrolle
9、d Copyright 2008, Ford Global Technologies, LLC Page 2 of 9 3.0 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.3 COMPOSITION 3.3.1 Vehicle Modified Polyester crosslin
10、kable resin(s), with melamine or blocked isocyanate crosslinker(s). 3.3.2 Pigmentation Colorants, extender, and filler pigments obtain the desired color and resistance properties. Photo-oxidizable pigments are not permitted. 3.3.3 Volatile Organic Compounds (V.O.C.), max 0.5 kg/L (ASTM D 3960 except
11、 bake schedule is as sprayed 60 minutes at 110 +/- 2 C) The volatile portion of this material shall meet the applicable requirements of the local air pollution control for the assembly plants in which the primer is used. 3.3.4 Non-Volatile Initial Sample (FLTM BI 102-01) +/- 2%, min 60% 3.4 PHYSICAL
12、 PROPERTIES (LIQUID STATE) 3.4.1 Stability (FLTM BI 102-03) Heat Stability Shall not jell, settle hard or increase viscosity in excess of 10 s Room Temperature No hard settling after 16 h with stability test sample reduced to spray viscosity with the suppliers recommended solvent or blend 3.4.2 Elec
13、trical Properties Resistivity: 0.05-0.5 megaohms Suitable to permit application at high transfer efficiencies using electrostatic equipment. 3.4.3 Viscosity Initial sample (FLTM BI 111-01) +/- 10 s Final approval of a specific material viscosity shall be made by the affected manufacturing activity.
14、In all cases the viscosity shall be within specification limits as identified on the material control plan. ENGINEERING MATERIAL SPECIFICATION WSS-M6J152-B1/B2/B3/B4/B5 Printed copies are uncontrolled Copyright 2008, Ford Global Technologies, LLC Page 3 of 9 3.4.4 Density (weight per volume) Initial
15、 Sample (ASTM D 1475) +/- 0.05 g/ml 3.5 PREPARATION OF TEST PANELS Prepare test panels per FLTM BI 103-02, Method C, using the viscosity specified by the supplier and a dry film build of 30 +/- 5 micrometers. Use the following substrates: 3.5.1 Substrates . Unpolished cold rolled steel zinc phosphat
16、ed panels conforming to the requirements of WSK-M3P1-C. . WSB-M1A250 galvanized steel zinc phosphated panels conforming to the requirements of WSK-M3P1-C. . Exterior thermoplastic and thermosetting plastic parts primed to conform to current production requirement. On metal substrates, all candidate
17、primers shall be tested as a guidecoat, directly over an approved current production electrocoat primer. On plastic substrates, all candidate primers shall be tested as a guidecoat, over primed plastic. Two sets of plastic panels shall be prepared: . Set I: An electrocoat primer bake is simulated. T
18、he panels are allowed to return to room temperature prior to applying the candidate primer. . Set II: The candidate primer is applied without simulating an electrocoat primer bake. All submissions will be tested at both min and max primer surfacer bake cycles (para 3.5.8). 3.5.2 Primers Only with Sa
19、nd-through Area Prepare panels in the following manner: . Substrates: Cold rolled steel, galvanized steel, and plastic with conductive primer. . Electrocoat primer (metal substrates only): Prime per FLTM BI 120-01 and bake at 10 minutes at 182 +/- 2 C metal temperature (20 minutes at 182 +/- 2 C lab
20、oratory oven). . Sanding: Allow panel to cool to room temperature. Using 320 grit sandpaper, make a 30 mm diameter bullseye through the primer, exposing the substrate. Clean the substrate and primer dust off of the panel. . Primer surfacer: Apply 30 +/- 5 micrometers of the candidate primer. Bake at
21、 both cycles shown in para 3.5.8. ENGINEERING MATERIAL SPECIFICATION WSS-M6J152-B1/B2/B3/B4/B5 Printed copies are uncontrolled Copyright 2008, Ford Global Technologies, LLC Page 4 of 9 3.5.3 Electrocoat - Primer Surfacer - Topcoat System . Substrate: Cold rolled steel, galvanized steel, and plastic
22、with conductive primer. . Electrocoat primer (metal substrates only): Prime per FLTM BI 120-01 and bake at 10 minutes at 182 +/- 2 C metal temperature (20 minutes at 182 +/- 2 C laboratory oven). . Primer surfacer: Apply 30 +/- 5 micrometers of the candidate primer. Bake at both cycles shown in para
23、 3.5.8. . Topcoat: Apply enamel and bake, per para 3.5.7. 3.5.4 Electrocoat - Frontal Surface Chip Primer - Primer Surfacer - Topcoat System . Substrates: Galvanized steel and plastic with conductive primer. . Electrocoat primer (metal substrate only): Prime per FLTM 120-01 and bake at 10 minutes at
24、 182 +/- 2 C metal temperature (20 minutes at 182 +/- 2 C laboratory oven). . Frontal surface chip primer: Apply 38 micrometers of current production frontal surface chip primer. Flash for 3 minutes max. . Primer surfacer: Apply 30 +/- 5 micrometers of the candidate primer wet-on-wet over the fronta
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