FORD WSS-M21P51-A2-2011 FASTENER FINISH ELECTROPLATED ZINC-NICKEL TRIVALENT CHROMIUM PASSIVATE LUBRICATED SEALER SILVER TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M21.pdf
《FORD WSS-M21P51-A2-2011 FASTENER FINISH ELECTROPLATED ZINC-NICKEL TRIVALENT CHROMIUM PASSIVATE LUBRICATED SEALER SILVER TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M21.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M21P51-A2-2011 FASTENER FINISH ELECTROPLATED ZINC-NICKEL TRIVALENT CHROMIUM PASSIVATE LUBRICATED SEALER SILVER TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M21.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions 2011 06 28 Activated D. Drobnich, FNA Controlled document at www.MATS Copyright 2011, Ford Global Technologies, LLC. Page 1 of 7 FASTENER FINISH, ELECTROPLATED ZINC-NICKEL, WSS-M21P51-A1 TRIVALENT CHROMIUM PASSIVATE, SILVER FASTENER FINISH, E
2、LECTROPLATED ZINC-NICKEL, WSS-M21P51-A2 TRIVALENT CHROMIUM PASSIVATE, LUBRICATED SEALER, SILVER FASTENER FINISH, ELECTROPLATED ZINC-NICKEL, WSS-M21P51-A3 TRIVALENT CHROMIUM PASSIVATE, LUBRICATED SEALER, ENHANCED LUBRICITY, SILVER FASTENER FINISH, ELECTROPLATED ZINC-NICKEL, WSS-M21P51-A4 TRIVALENT CH
3、ROMIUM PASSIVATE, LUBRICATED SEALER, DURABLE LUBRICITY, SILVER FASTENER FINISH, ELECTROPLATED ZINC-NICKEL, WSS-M21P51-A5 TRIVALENT CHROMIUM PASSIVATE, LUBRICATED SEALER, BLACK FASTENER FINISH, ELECTROPLATED ZINC-NICKEL, WSS-M21P51-A6 TRIVALENT CHROMIUM PASSIVATE, LUBRICATED SEALER, ENHANCED LUBRICIT
4、Y, BLACK 1. SCOPE The materials defined by these specifications are corrosion protective coatings over steel and iron substrates. All consist of an alkaline zinc nickel alloy and trivalent chromium passivate. A2, A3, A4, A5 and A6 are also coated with a clear sealer to increase corrosion resistance
5、and/or to provide consistent torque-tension control. 2. APPLICATION These specifications were released for materials used as corrosion protective coatings for fasteners and other standard parts used throughout the vehicle. Some of the processes used to produce these coatings may induce hydrogen embr
6、ittlement in parts with high hardness. Parts identified as being at risk for hydrogen embrittlement shall meet the requirements of WSS-M99A3-A. A1 Corrosion resistance for non-threaded standard parts A2 Corrosion resistance plus lubrication for threaded fasteners such as self tapping screws, thread
7、forming screws for plastic and those with ISO metric screw threads; can be used in grounding applications A3 Corrosion resistance plus enhanced lubrication for threaded fasteners such as thread forming screws for metal; can be used in grounding screw applications A4 Corrosion resistance plus a speci
8、al lubricant specifically designed for conical wheel nuts A5 Class A black appearance with corrosion resistance plus lubrication for threaded fasteners such as self tapping screws, thread forming screws for plastic and those with ISO metric screw threads A6 Class A black appearance with corrosion re
9、sistance plus enhanced lubrication for fasteners such as thread forming screws for metal ENGINEERING MATERIAL SPECIFICATION WSS-M21P51-A1/A2/A3/A4/A5/A6 Controlled document at www.MATS Copyright 2011, Ford Global Technologies, LLC. Page 2 of 7 2.1 SERVICE APPLICATION 2.1.1 The recommended maximum co
10、ntinuous service temperature is 310C. 2.1.2 A2 and A3 exhibit electrical continuity to the substrate and are suitable for most electrical grounding applications. 3. REQUIREMENTS 3.1 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Qual
11、ity System Requirements for Production Materials (WSS-M99P1111-A). Part producers must use approved materials specified on the Companys Approved Source List. 3.2 EMBRITTLEMENT Parts coated to this specification shall be free from the detrimental effects of hydrogen embrittlement or other factors whi
12、ch result in part brittleness. All parts shall meet the requirements of WSS-M99A3-A. 3.3 COATING APPLICATION 3.3.1 Applicators shall follow material supplier procedures and recommendations for chemical usage, equipment, analysis, and processing. Applicators must have documentation to show that proce
13、dures and recommendations are being followed. 3.3.2 Prior to coating, the substrate shall be free of oil, dirt, and similar foreign materials. If a cleaning process is necessary, it shall have no detrimental effect on the substrate, including freedom from embrittlement. See WSS-M99A3-A. 3.3.3 The se
14、alers used under this specification do not require curing. The sealers shall be dried in place using hot air, typically in a spin dryer. Drying on a conveyer and other drying methods may be appropriate. 3.3.4 The applicator shall follow the material suppliers recommendations concerning the drying te
15、mperature and spin speeds suitable for the basket diameter being used. 3.4 COATING APPEARANCE 3.4.1 The base zinc-nickel plating will have a metallic silver appearance prior to passivate application. 3.4.2 The passivate layer for A1, A2, A3 and A4 will have an appearance of slight iridescence and co
16、lor variation consistent with interference films (e.g. yellow, orange, green, blue, purple variegation). 3.4.3 The passivate layer for A5 and A6 will be black. 3.4.4 The sealers used for A2, A3, A5 and A6 will be a translucent film free from discontinuities. ENGINEERING MATERIAL SPECIFICATION WSS-M2
17、1P51-A1/A2/A3/A4/A5/A6 Controlled document at www.MATS Copyright 2011, Ford Global Technologies, LLC. Page 3 of 7 3.4.5 The sealer used for A4 will be a translucent film but may contain some discontinuities in the form of touch marks or blemishes; however, they shall not adversely affect the mechani
18、cal performance or corrosion resistance of the part. 3.4.6 The sealers used for A2 and A3 may have additional color ID of green or blue. 3.5 COATING PROPERTIES 3.5.1 Composition The alkaline base zinc-nickel plating shall have a nickel content of 12 to 17% as measured by calibrated X-ray fluorescenc
19、e spectrometers in accordance with the suppliers requirements. The plating shall be a uniform, homogeneous alloy of zinc and nickel throughout the thickness of the deposit and across the high and low current densities of the part. Zinc-nickel alloy is the only deposit to be applied directly to the b
20、ase. The use of a zinc strike is not permitted. The composition of the zinc-nickel plating, passivate, and water soluble lubricated sealer shall all be in accordance with the chemical suppliers requirements. 3.5.2 Thickness (ASTM B659 / ASTM B487) 3.5.2.1 The electroplated zinc-nickel layer shall ha
21、ve a thickness of 8 to 14 micrometers measured on flat surfaces. In case of dispute, the thickness measurement umpire method shall be metallographic sectioning per ASTM B487. 3.5.2.2 The passivate layer thickness is not subject to measurement but will be less than 500 nanometers and greater than 50
22、nanometers. 3.5.2.3 The sealer layer thickness is not subject to measurement but will be less than 2 micrometers and greater than 0.5 micrometers. The thickness shall be sufficient to meet the corrosion requirements of the substrate material as well as the friction requirements. 3.5.2.4 The typical
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