FORD WSS-M33J10-B4-2010 ENAMEL (3 WET) COMPLIANCE VOC HIGH SOLIDS THERMOSET CLEARCOAT PROCESSED WITH WSS-M33J10-B1 WSS-M33J10-B2 REDUCED VISCOSITY EXTERIOR TO BE USED WITH FORD WS.pdf
《FORD WSS-M33J10-B4-2010 ENAMEL (3 WET) COMPLIANCE VOC HIGH SOLIDS THERMOSET CLEARCOAT PROCESSED WITH WSS-M33J10-B1 WSS-M33J10-B2 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-M33J10-B4-2010 ENAMEL (3 WET) COMPLIANCE VOC HIGH SOLIDS THERMOSET CLEARCOAT PROCESSED WITH WSS-M33J10-B1 WSS-M33J10-B2 REDUCED VISCOSITY EXTERIOR TO BE USED WITH FORD WS.pdf(21页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATIONDate Action Revisions Rev. 0 2010 04 29 Activated T. Weingartz, NA Printed copies are uncontrolled Copyright 2010, Ford Global Technologies, LLC Page 1 of 21 ENAMEL, (3 WET) COMPLIANCE VOC, HIGH SOLIDS THERMOSET PRIMER, WSS-M33J10-A1 PROCESSED WITH WSS-M33J10-A2/WS
2、S M33J10-A4, EXTERIOR ENAMEL, (3 WET) COMPLIANCE VOC, HIGH SOLIDS THERMOSET BASECOAT, PROCESSED WITH WSS-M33J10-A1/WSS-M33J10-A4, EXTERIOR WSS-M33J10-A2 ENAMEL, (3 WET) COMPLIANCE VOC, HIGH SOLIDS THERMOSET MIDCOAT, WSS-M33J10-A3 PROCESSED WITH WSS-M33J10-A1/WSS-M33J10-A2/WSS-M33J10-A4, EXTERIOR ENA
3、MEL, (3 WET) COMPLIANCE VOC, HIGH SOLIDS THERMOSET CLEARCOAT, WSS-M33J10-A4 PROCESSED WITH WSS-M33J10-A1/WSS-M33J10-A2, EXTERIOR ENAMEL, (3 WET) COMPLIANCE VOC, HIGH SOLIDS THERMOSET TINTED WSS-M33J10-A5 CLEARCOAT, PROCESSED WITH WSS-M33J10-A1/WSS-M33J10-A2, EXTERIOR ENAMEL, (3 WET) COMPLIANCE VOC,
4、HIGH SOLIDS THERMOSET PRIMER, WSS-M33J10-B1 PROCESSED WITH WSS-M33J10-B2/WSS-M33J10-B4, REDUCED VISCOSITY, EXTERIOR ENAMEL, (3 WET) COMPLIANCE VOC, HIGH SOLIDS THERMOSET BASECOAT, WSS-M33J10-B2 PROCESSED WITH WSS-M33J10-B1/WSS-M33J10-B4, REDUCED VISCOSITY, EXTERIOR ENAMEL, (3 WET) COMPLIANCE VOC, HI
5、GH SOLIDS THERMOSET MIDCOAT, WSS-M33J10-B3 PROCESSED WITH WSS-M33J10-B1/WSS-M33J10-B2/WSS-M33J10-B4, REDUCED VISCOSITY, EXTERIOR ENAMEL, (3 WET) COMPLIANCE VOC, HIGH SOLIDS THERMOSET CLEARCOAT, WSS-M33J10-B4 PROCESSED WITH WSS-M33J10-B1/WSS-M33J10-B2, REDUCED VISCOSITY, EXTERIOR ENAMEL, (3 WET) COMP
6、LIANCE VOC, HIGH SOLIDS THERMOSET TINTED WSS-M33J10-B5 CLEARCOAT, PROCESSED WITH WSS-M33J10-B1/WSS-M33J10-B2, REDUCED VISCOSITY, EXTERIOR 1 SCOPE The materials defined by these specifications are coatings, which consist of primer surfacers over which is applied a pigmented thermoset basecoat enamel
7、and a clear or tinted clear thermoset clearcoat in a wet-on-wet-on-wet (3 Wet) process. These materials are monobaked. Unique tricoat colors are also included in this specification. Tricoat colors consist of a pigmented basecoat followed by a non-hiding midcoat over which is applied a clear or tinte
8、d clear. Tricoat colors may be processed wet-on-wet-on-wet-on-wet application and monobaked or in a wet on bake operation. ENGINEERING MATERIAL SPECIFICATIONWSS-M33J10-A1/A2/A3/A4/A5/B1/B2/B3/B4/B5 Printed copies are uncontrolled Copyright 2010, Ford Global Technologies, LLC Page 2 of 21 2 APPLICATI
9、ON These specifications were released originally for materials used as the combined primer surfacer (guidecoat), basecoat, and clearcoat finish when applied wet-on-wet-on-wet (3 Wet) and mono baked on automobile bodies, hoods, fenders and other exterior parts, and shall be satisfactory for use over
10、previously baked 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 basecoat portion is used alone, without clearcoat, as an interior baking e
11、namel for some applications. 3 REQUIREMENTS Tests shall be made on the basis of comparison with approved production material, to be chosen by the approving materials engineer. Note: For purposes of the specification, paint systems which utilize a standard primer surfacer /basecoat/clearcoat, a prime
12、r surfacer/basecoat/midcoat/clearcoat and/or a system with tinted clearcoat shall be considered the “complete enamel system“. For basecoat only applications refer to section 3.11. 3.1 STANDARD REQUREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the companys sta
13、ndard requirements for production materials (WSS-M99P1111-A). For the materials described within this specification those requirements include but are not limited to the performance specification and the system design specification. 3.2 COMPOSITION 3.2.1 Resin 3.2.1.1 Primers shall be modified polye
14、ster and/or modified polyurethane crosslinkable resin(s), with melamine and/or reactive urethane crosslinker(s) or equivalent. 3.2.1.2 Basecoats and traditional tricoat midcoat shall be thermosetting, synthetic resins with a melamine crosslinking system or equivalent. 3.2.1.3 Clearcoats will be ther
15、mosetting, acrylic-modified synthetic resins with a hybrid crosslinking system or equivalent. Each will be appropriately fortified so as to meet the durability requirement of 10 years. The primer composition will meet all performance expectations in terms of stone chip damage and adhesion. 3.2.2 Pig
16、ments Pigments are exterior quality automotive grade selected to meet durability requirements. 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
17、local government regulations. ENGINEERING MATERIAL SPECIFICATIONWSS-M33J10-A1/A2/A3/A4/A5/B1/B2/B3/B4/B5 Printed copies are uncontrolled Copyright 2010, Ford Global Technologies, LLC Page 3 of 21 3.2.4 Ultra Violet Light Absorber(s) (UVA) and Hindered Amine Light Stabilizers (HALS) All approved mate
18、rials shall include with the initial Sample Report an Ultra-Violet/Visible spectroscopic analysis. This shall be recorded and filed by the approving Paint Material Engineering Laboratory of the Ford Motor Company as a reference standard for future use and recertification. The coating system shall co
19、ntain 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 LIQUID STATE The following evaluatio
20、n 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, range See initial sample +/- 2% (ASTM D 2369-07 for North America) (FLTM BI 102-01 for Europe) 3.3.2 Volati
21、le Organic Content, range See initial sample +/- 1.5% (ASTM D 3960) 3.3.3 Weight per Volume, range See initial sample +/- 0.025 g/ml (ASTM D 1475) 3.3.4 Volume Solids, range at Application Viscosity See initial sample +/-1.3% (ASTM D 2697 or FLTM BI 154-02) Primer 42% minimum Basecoat 37% minimuClea
22、rcoat 49% minimum 3.3.5 Pigment Content in Tinted Clearcoat, max 0.25% (ASTM D 2471, max weight % on total formula of colored pigment) 3.3.6 Viscosity (ASTM D 1200) Supplier shall report value at application reduction. 3.3.7 Stability (ASTM D 1849) 3.3.7.1 Shelf Stability 90 days No more than 30% in
23、crease in viscosity permitted. ENGINEERING MATERIAL SPECIFICATIONWSS-M33J10-A1/A2/A3/A4/A5/B1/B2/B3/B4/B5 Printed copies are uncontrolled Copyright 2010, Ford Global Technologies, LLC Page 4 of 21 3.3.7.2 Accelerated Stability (60 C, 16 h) No more than 30% increase in viscosity permitted. After the
24、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. 3.3.8 Resistivity 0.05 to 2.00 megohms (ASTM
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