FORD WSS-M1P73-C2-2009 PLATING CHROMIUM DECORATIVE EXTERIOR ALUMINUM LEVEL 2 CORROSION TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M1P73-C1)《汽车外部用铝部件用2级防腐的装饰性铬镀层 与标准F.pdf
《FORD WSS-M1P73-C2-2009 PLATING CHROMIUM DECORATIVE EXTERIOR ALUMINUM LEVEL 2 CORROSION TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M1P73-C1)《汽车外部用铝部件用2级防腐的装饰性铬镀层 与标准F.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M1P73-C2-2009 PLATING CHROMIUM DECORATIVE EXTERIOR ALUMINUM LEVEL 2 CORROSION TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M1P73-C1)《汽车外部用铝部件用2级防腐的装饰性铬镀层 与标准F.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATIONDate Action Revisions 2009 01 21 Activated C. Mracna, FNA Printed copies are uncontrolled Copyright 2009, Ford Global Technologies, LLC Page 1 of 5 PLATING, CHROMIUM, DECORATIVE EXTERIOR, ALUMINUM WSS-M1P73-C1 LEVEL 1 CORROSION PLATING, CHROMIUM, DECORATIVE EXTERIO
2、R, ALUMINUM WSS-M1P73-C2 LEVEL 2 CORROSION 1. SCOPE This specification defines performance requirements for exterior chromium plating systems on aluminum substrates. 2. APPLICATION This specification was released originally to define a decorative and/or protective metallic finish for aluminum alloy
3、road wheels. 3. REQUIREMENTS All part testing requirements apply to those areas of the part identified as a significant surface per sec 4.1 unless otherwise specified on the engineering drawing. 3.1 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to
4、the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.2 APPEARANCE 3.2.1 Buffing of Plating Because of the potential adverse effect on corrosion resistance, buffing of final chromium plating on exterior parts is not permitted. Brushing or other approved mechanical treatment
5、 on nickel or copper coatings are permitted provided that minimum plating thickness requirements are met after treatment. 3.3 PLATING ADHESION (ASTM B 571) Adhesion of the electroplate to the base metal and between layers of plating must conform to the requirements of the following test methods per
6、ASTM B 571 unless otherwise indicated: 3.3.1 Bend Tests No peeling, flaking, or lift-off of the electroplate from the substrate or between layers of the electroplate is permitted. ENGINEERING MATERIAL SPECIFICATIONWSB-M1P73-C1/C2 Printed copies are uncontrolled Copyright 2009, Ford Global Technologi
7、es, LLC Page 2 of 5 3.3.2 Grind-Saw Test No lifting or peeling of the electroplate from the substrate or between layers of the electroplate is permitted. 3.3.3 Scribe-Grid Test 5% Plating Removal Lightly hand sand plated surface (10 double rubs, moderate pressure) with P600 paper until dull, before
8、scribe operation. Scribe eight lines in a rectangular grid in 0.5 cm increments. Use 3M No. 898 pressure sensitive tape. No peeling, flaking, or lift-off of the electroplate from the substrate or between layers of the electroplate is permitted. 3.4 DUCTILITY (ASTM B 490) Although this is considered
9、a portion of the process control and not a requirement of part performance, the ductility of the electrodeposit on a finished part is considered acceptable when foils plated in the individual nickel baths meet or exceed the following values: Semi-bright Nickel 80% Bright Nickel 20% 3.5 PLATING THICK
10、NESS (ASTM B 487, ASTM B 556, ASTM B504) It is the suppliers responsibility to identify the plating thickness distribution for each unique part design and rack design by mapping the plating racks and plated parts and to employ any special processing techniques, e.g., the use of auxiliary anodes and/
11、or shields, reducing the number of parts per rack etc., which may be required to consistently meet the specified minimum plating thicknesses on all significant surfaces. The optical measurement of copper and nickel deposits on significant surfaces shall be considered the standard thickness test meth
12、od (ASTM B 487). The chromium plate thickness on significant surfaces shall be checked by the spot test as described in ASTM B 556 or by the electronic deplating test, ASTM B504, Determination of Thickness of Chromium Plate. In case of dispute, ASTM B504 shall be the umpire method. The plating thick
13、ness requirements identified below represent minimum values in micrometers and apply to all areas of significant surfaces. Thickness Copper 15 Semi-bright Nickel (a) 30 Bright Nickel (b) plus 10 Special Nickel (c) or Low Gloss Nickel (d) Total Nickel (e) 40 Microporous Chromium (f) 0.18 ENGINEERING
14、MATERIAL SPECIFICATIONWSB-M1P73-C1/C2 Printed copies are uncontrolled Copyright 2009, Ford Global Technologies, LLC Page 3 of 5 3.6 MICROPOROSITY, min 10 000 pores/cm2(FLTM BQ 103-06) 3.7 THERMAL CYCLE AND CASS TEST (ASTM B 368) There shall be no evidence of plating failure on significant surfaces d
15、ue to corrosion or loss of adhesion to the substrate after completing six cycles consisting of the following 3.7.1 Requirements for Testing . 121 +/- 2 C for 2 h . 23 +/- 2 C for 1 h . -35 +/- 2 C for 2 h . 23 +/- 2 C for 1 h . 16 h Cass test (ASTM B 368) Note: Parts shall be rinsed with demineraliz
16、ed water only, after each Cass test cycle. Scrubbing, abrasive cleaning or polishing is not permitted. Parts are then examined for corrosion defects. 3.7.2 Plating and Corrosion Defects 3.7.2.1 Cracks and Crazing Cracks and crazing of the plating are caused by expansion and/or contraction due to tem
17、perature change. Cracks or crazing exceeding 6 mm in length observed on significant surfaces shall be considered failure of the part. 3.7.2.2 Blistering and Corrosion Blisters defined as “pop-ups“ can be caused by improper plating or be the result of corrosion. Failure is noted when: Any site (pit a
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