FORD WSS-M33J11-B1-2017 ENAMEL (2 WET) HIGH SOLIDS THERMOSET STRAIGHT SHADE (NON-METALLIC) MONOCOAT PROCESSED WITH WSS-M33J10-B1 REDUCED VISCOSITY EXTERIOR TO BE USED WITH FORD WS.pdf
《FORD WSS-M33J11-B1-2017 ENAMEL (2 WET) HIGH SOLIDS THERMOSET STRAIGHT SHADE (NON-METALLIC) MONOCOAT PROCESSED WITH WSS-M33J10-B1 REDUCED VISCOSITY EXTERIOR TO BE USED WITH FORD WS.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M33J11-B1-2017 ENAMEL (2 WET) HIGH SOLIDS THERMOSET STRAIGHT SHADE (NON-METALLIC) MONOCOAT PROCESSED WITH WSS-M33J10-B1 REDUCED VISCOSITY EXTERIOR TO BE USED WITH FORD WS.pdf(20页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev. 01 2017 03 20 Revised Revised Wave Scan 3.6.2 M. Zimmer / M. Jones, NA 2013 01 14 Activated J. Cottrell, NA Controlled document at www.MATS Copyright 2017, Ford Global Technologies, LLC Page 1 of 20 ENAMEL, (2 WET), HIGH SOLIDS THERMOSET
2、 WSS-M33J11-A1 STRAIGHT SHADE (NON-METALLIC) MONOCOAT, PROCESSED WITH WSS-M33J10-A1, EXTERIOR ENAMEL, (2 WET), HIGH SOLIDS THERMOSET WSS-M33J11-B1 STRAIGHT SHADE (NON-METALLIC) MONOCOAT, PROCESSED WITH WSS-M33J10-B1, REDUCED VISCOSITY, EXTERIOR 1 SCOPE The materials defined by these specifications a
3、re coatings, which consist of a pigmented thermoset straight shade (non-metallic) monocoat enamel in a wet-on-wet (2 Wet) process. These materials are monobaked. Note: for baked primer use with WSS-M6J152-B1, B2 and for Wet on Wet use with WSS-M33J10-A1, B1 2 APPLICATION These specifications were re
4、leased originally for materials used over baked primer or as the combined primer surfacer (guidecoat) and monocoat finish when applied wet-on-wet (2 Wet) and mono baked on automobile bodies, hoods, fenders and other exterior parts. These materials shall be satisfactory for use over previously baked
5、enamel, as in paint repair or two toning operations. These materials have been formulated to provide windshield bonding without the use of flange primer (direct glazing) and allow for flush glass designs. The monocoat portion is used alone, without primer, as an interior baking enamel for some appli
6、cations. 3 REQUIREMENTS The responsible Materials Engineer will designate the appropriate material to be used as a control for testing 3.1 APPROVED SOURCES This specification requires the use of approved sources. Only the sources identified on the Ford Approved Source List (ASL) can be used when thi
7、s specification is listed on the drawing, CAD file, or other documents. The list of approved sources is located within Ford at or available externally through a Ford Materials Engineer. 3.2 COMPOSITION 3.2.1 Resin 3.2.1.1 Primers shall be modified polyester and/or modified polyurethane crosslinkabl
8、e resin(s), with melamine and/or reactive urethane crosslinker(s) or equivalent. 3.2.1.2 Topcoats shall be thermosetting, synthetic resins with a melamine crosslinking system or equivalent. Each will be appropriately fortified so as to meet the durability requirement of 10 years. The primer composit
9、ion will meet all performance expectations in terms of stone chip damage and adhesion. ENGINEERING MATERIAL SPECIFICATION WSS-M33J11-A1/B1 Copyright 2017, Ford Global Technologies, LLC Page 2 of 20 3.2.2 Pigments Pigments are exterior quality automotive grade selected to meet durability requirements
10、. 3.2.3 Solvents The volatility of the 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. 3.2.4 Ultra Violet Light Absorber(s) (UVA) and Hindered Amine L
11、ight Stabilizers (HALS) All approved materials shall include with the initial Sample Report an Ultra-Violet/Visible spectroscopic analysis. This shall be recorded and filed by the approving Paint Engineering Laboratory of the Ford Motor Company as a reference standard for future use and recertificat
12、ion. The coating system shall contain sufficient fortification of suitable UVA and HALS to provide 10 year long term durability. 3.2.5 Flash Point The flash point shall conform to the safety regulations applicable to the plant and/or country where the materials are used. 3.3 PHYSICAL PROPERTIES LIQU
13、ID STATE The following evaluation must be conducted at as shipped and application viscosity. Over the application viscosity range, material shall be in compliance with local emissions regulations. 3.3.1 Non-Volatile Content See initial sample +/- 2 % (ASTM D2369-07) 3.3.2 Volatile Organic Content Se
14、e initial sample +/- 1.5 % (ASTM D3960) 3.3.3 Weight per Volume See initial sample (ASTM D1475) +/-0.025 g/ml 3.3.4 Volume Solids See initial sample +/-1.3 % (ASTM D2697) Primer 42%minimum Topcoat 49% minimum 3.3.5 Viscosity Report (ASTM D1200) Supplier shall report value at application reduction. 3
15、.3.6 Stability (ASTM D1849) 3.3.6.1 Shelf Stability No more than 30% increase (90 days) in viscosity permitted. ENGINEERING MATERIAL SPECIFICATION WSS-M33J11-A1/B1 Copyright 2017, Ford Global Technologies, LLC Page 3 of 20 3.3.6.2 Accelerated Stability No more than 30 % (60 C, 16 h) increase in visc
16、osity permitted. After the accelerated stability test, the material shall pass all specification requirements. Critical testing must include; solvent pop, sag resistance, appearance, direct to glass bonding, intercoat adhesion, repair paint system wetting, and tape/label adhesion. 3.3.7 Resistivity
17、0.05 to 2.00 megohms (ASTM D5682) Volatile solvents and other components affecting electrical conductivity shall be adjusted such that the resistivity at application viscosity shall be within specified limits. 3.4 PREPARATION OF TEST PANELS Substrate: All current production substrates, including but
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