FORD WSS-M16J20-A2-2014 PAINT TWO COMPONENT ELASTOMERIC BASECOAT CLEARCOAT OVER FLEXIBLE SUSTRATES EXTERIOR TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M16J20-A1).pdf
《FORD WSS-M16J20-A2-2014 PAINT TWO COMPONENT ELASTOMERIC BASECOAT CLEARCOAT OVER FLEXIBLE SUSTRATES EXTERIOR TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M16J20-A1).pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M16J20-A2-2014 PAINT TWO COMPONENT ELASTOMERIC BASECOAT CLEARCOAT OVER FLEXIBLE SUSTRATES EXTERIOR TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M16J20-A1).pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev 02 2014 07 16 Editorial Corrected paragraph number in 3.7.9 M. Corley, EU 2011 09 26 Revised / Activated A3 See Summary of revisions (5.0) for details A. Weakley/J. Crist 2007 07 31 Activated J. Robincheck Controlled document at www.MATS
2、Copyright 2014, Ford Global Technologies, LLC Page 1 of 13 PAINT, ONE COMPONENT ELASTOMERIC BASECOAT/CLEARCOAT WSS-M16J20-A1 OVER FLEXIBLE SUSTRATES, EXTERIOR PAINT, TWO COMPONENT ELASTOMERIC BASECOAT/CLEARCOAT WSS-M16J20-A2 OVER FLEXIBLE SUSTRATES, EXTERIOR PAINT, ONE COMPONENT BASECOAT/TWO COMPONE
3、NT CLEARCOAT WSS-M16J20-A3 OVER FLEXIBLE SUSTRATES, EXTERIOR 1. SCOPE The materials defined by these specifications are elastomeric paints, which consist of a basecoat and clear topcoat applied by a baked process. These materials are monobaked. Paint systems may be processed wet-on-wet application a
4、nd monobaked, or paint may be baked between wetcoats. This specification also includes unique colors that require Tri or 4 coat systems. Tricoat colors consist of a pigmented groundcoat followed by a non-hiding midcoat over which is applied a clear or tinted clear. Four coat systems consist of a Bas
5、ecoat, Clearcoat baked then the application of an effect basecoat with a clear or tinted clear. 2. APPLICATION These specifications were released originally for paints used as the final topcoat on exterior trim components made of flexible substrates, such as fascia, bumpers, lip moldings, appliqus,
6、cladding, bodyside moldings. It shall be satisfactory for use over specified primers or over previously baked enamel, as in paint repair or tutone operations. 2.1 LIMITATIONS Bake temperature should not exceed softening temperature of substrate material as agreed upon by Ford Materials Engineering.
7、3. REQUIREMENTS Testing to be used for initial qualification of materials and shall be made on the basis of comparison with approved production material, chosen by the approving materials engineer. 3.1 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform
8、to the Companys Standard Requirements for Production Materials (WSS-M99P1111-A). 3.2 COMPOSITION Both the basecoat and clearcoat shall contain UV absorbers. The supplier will furnish the specific composition and concentration of the absorbers upon request. 3.2.1 Resin Shall be either a polyester, ac
9、rylic, modified urethane polymer or a polyurethane. Minor amounts of modifiers and/or plasticizers are allowed. ENGINEERING MATERIAL SPECIFICATION WSS-M16J20-A1/A2/A3 Copyright 2014, Ford Global Technologies, LLC Page 2 of 13 3.2.2 Pigments Pigments are exterior automotive grade selected to match th
10、e Ford Motor Company master and meet the durability requirements. 3.2.3 Solvents The volatility of solvents will be such that there shall be no paint sagging, roughness or dry spray at specified film thicknesses. Solvents shall be HAPS compliant if it is required by local government regulations 3.3
11、PHYSICAL PROPERTIES LIQUID STATE The following evaluation must be conducted on both the basecoat and clearcoat at application viscosity. Throughout the application viscosity range, material shall be in compliance with local emission regulations. Property variation acceptability as identified below,
12、shall be based on the recorded values of the originally approved production sample as approved by Ford Materials Engineering. This data will be used in developing control plan requirements. 3.3.1 Non-Volatile Content, range Initial sample +/- 4% (ASTM D 1353) 3.3.2 Volatile Organic Compound, range I
13、nitial sample +/- 1% (ASTM D 3960) 3.3.3 Weight per Volume, range Initial sample +/- 0.03 g/ml (ASTM D 1475) 3.3.4 Volume Solids, range Initial sample +/- 2.0% (ASTM D 2697) 3.3.5 Viscosity Report (ASTM D 1200) 3.3.6 Stability No more than 30% (ASTM D 1849) viscosity increase permitted. 3.3.6.1 Shel
14、f Stability, 90 days 3.3.6.2 Accelerated Stability, 60 C, 16 h 3.3.7 Resistivity 0.005 to 2.00 megohms (ASTM D 5682) Volatile solvents and other components affecting electrical conductivity shall be adjusted such that the resistivity at application viscosity shall be within specified limits. ENGINEE
15、RING MATERIAL SPECIFICATION WSS-M16J20-A1/A2/A3 Copyright 2014, Ford Global Technologies, LLC Page 3 of 13 3.4 PREPARATION OF TEST PANELS 3.4.1 Substrates Flexible polymers and flexible polymer blends, PU, PP, TEO, etc. 3.4.2 Substrate Condition The surface to be coated must be cleaned to ensure the
16、 absence of oil or alkaline residues, fingerprints, corrosion, mold release agents, dirt, moisture, and other foreign materials. Surface energy/resistivity or chemical reaction(s) enhancements (flaming, corona discharge or plasma) and/or addition of conductive materials, necessary to meet the requir
17、ements of this specification, shall be approved by Materials Engineering and noted on ASL 3.4.3 Adhesion Promoter Apply 6-16 m DFT (Dry Film Thickness) of the primer or as otherwise recommended, as specified for the substrate. 3.4.4 Basecoat/Clearcoat Apply basecoat to required dry film thickness by
18、 spray under conditions appropriate for basecoats, and flash as required. Apply clearcoat to required dry film thickness. Bake using appropriate bake schedule. Record paint and oven type used. (As developed by para 3.5). 3.4.5 Design Verification/Initial Qualification Test Requirements as listed in
19、Table 1. 3.4.6 Aging After application of the top coat, all panels shall be aged at least 72 h at 23 +/- 2 C, 50 +/- 5% relative humidity or 16 hours at 45 +/- 1 C before testing. 3.4.7 Cure Process Window Must be developed per paragargh 3.5. ENGINEERING MATERIAL SPECIFICATION WSS-M16J20-A1/A2/A3 Co
20、pyright 2014, Ford Global Technologies, LLC Page 4 of 13 3.5 PROCESS WINDOW DEFINITION - NEW RESIN TECHNOLOGIES ONLY The supplier shall perform a DOE utilizing response surface analysis to determine the Process Window of the system. The three variables to be included in the design are Bake Time, Bak
21、e Temperature, and Film Thickness. An initial screening experiment should be run to determine what level will generate a window which includes testing to failure. This screening experiment should be reviewed with the Materials Engineer to set up the final DOE. Response attributes to the DOE should b
22、e based on the materials tested and should include, but not be limited to: Film Thickness (Para 3.6.3, 3.6.4) Ultraviolet Light Transmittance (Para 3.6.5) Adhesion (Para 3.7.1) Water Immersion (Para 3.7.2) Chipping (Para 3.7.8) Environmental Cycling (Para 3.7.9) High Performance Adhesion (Para 3.7.1
23、0) Report minimum, maximum, and target values for time, temperature, and film thickness. 3.6 FILM PROPERTIES 3.6.1 Color (FLTM BI 109-01, SAE J1545 Three Angle CMC) Shall match the Master Approved Sample color panel or the initial sample as approved by Design Center. 3.6.2 Gloss (FLTM BI 110-01, AST
24、M D 523) Shall match the Master Approved Sample color panel or the initial sample as approved by Design Center. 3.6.2.1 Gloss After Rebake 4 unit decrease max Rebake panel at target bake conditions per Para 3.5. 3.6.3 Film Thickness (ASTM B 487, PELT or equivalent) Targeted Film Thickness: These ran
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