FORD WSB-M1A311-B2-2002 STEEL SHEET ZINC OR ZINC ALLOY CONDUCTIVE DUPLEX LAYER COATED TO BE USED WITH FORD WSS-M99P1111-A 《锌或锌合金导电层涂覆的钢板 与标准FORD WSS-M99P1111-A一起使用 》.pdf
《FORD WSB-M1A311-B2-2002 STEEL SHEET ZINC OR ZINC ALLOY CONDUCTIVE DUPLEX LAYER COATED TO BE USED WITH FORD WSS-M99P1111-A 《锌或锌合金导电层涂覆的钢板 与标准FORD WSS-M99P1111-A一起使用 》.pdf》由会员分享,可在线阅读,更多相关《FORD WSB-M1A311-B2-2002 STEEL SHEET ZINC OR ZINC ALLOY CONDUCTIVE DUPLEX LAYER COATED TO BE USED WITH FORD WSS-M99P1111-A 《锌或锌合金导电层涂覆的钢板 与标准FORD WSS-M99P1111-A一起使用 》.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Material Name Specification Number Date Action Revisions 2002 07 31 Revised Updated and renumbered 1999 03 04 Revised Completely Revised and Updated, -B Inactivated K. Thurgood FAO 1991 05 20 NB00I10031967001 Released N. Chamberlain NAAO K. Thurgood EAO Printed co
2、pies are uncontrolled Page 1 of 9 Copyright 2002, Ford Global Technologies, Inc. STEEL, SHEET, ZINC OR ZINC ALLOY, CONDUCTIVE WSB-M1A311-B2 DUPLEX LAYER COATED 1. SCOPE The materials defined by this specification are two side zinc or zinc/ alloy coated mild steel sheet produced by the electrolytic o
3、r hot dip deposition process, which has been coated with a conductive chromate/ zinc dust corrosion inhibitor complex, and then overlaid (roller coated) with a conductive organic coating (on one side or both sides) to produce a Duplex coating. 2. APPLICATION This specification was released originall
4、y for material used for automobile body parts requiring good perforation (inside-out) corrosion resistance. CAUTION: Performance of the adhesive and sealer on the finished assembly may be dependent on adhesive and sealer compatibility with this material. It is, therefore, imperative that all enginee
5、ring drawings be reviewed by Materials Engineering prior to release. 3. REQUIREMENTS 3.1 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.2 BASE MATERIAL 3.2.1 Unless o
6、therwise specified on the Engineering Drawing, the requirements of WSD-M1A333-A2 shall apply. ENGINEERING MATERIAL SPECIFICATION WSB-M1A311-B2 Page 2 of 9 Copyright 2002, Ford Global Technologies, Inc. 3.3 COATING: ZINC BASED METALLIC 3.3.1 Coating Mass (ASTM A 90) Coating Mass Coating Mass Per Side
7、, g/m2 Designation Single Spot, minimum/max* Hot Dipped Electrolytic - - 60 60/90 60/80 70 70/100 70/90 98 100/130 100/130 *ASTM A 90 should be suitably modified to allow coating mass determinations on individual sides. 3.3.2 Coating Composition (Electrolytic) Unless an alloy coating is chosen, the
8、primary deposit shall be zinc. Electrolytic zinc/nickel shall contain 10.5 - 13.5 % nickel. Electrolytic zinc/iron shall contain 12 - 18 % iron. The frequency of testing and the analytical method shall form part of the control plan. 3.3.3 Coating Composition (Hot Dipped) Unless an alloy coating is c
9、hosen, the primary deposit shall be zinc. The frequency of testing and the analytical method shall form part of the control plan (see also para 4.2). 3.3.4 Coating Bend Test (ASTM A 924M/ASTM A 591) Coated steel shall conform to the coating Bend Test requirements of ASTM A 924M for hot dipped and AS
10、TM A 591 for electrolytic coated products. 3.3.5 Coating Wraparound and Edge Condition For one side coated products, traces of coating are allowed on the uncoated side of the sheet from the edges to 15 mm from the coil edges. No coating is allowed on the remainder of the uncoated side. The amount of
11、 coating on the strip edge shall be no greater than the max stipulated in para 3.3.1 and of sufficient adhesion to prevent flaking during the manufacturing process. ENGINEERING MATERIAL SPECIFICATION WSB-M1A311-B2 Page 3 of 9 Copyright 2002, Ford Global Technologies, Inc. 3.4 PRETREATMENT A conducti
12、ve inorganic/zinc dust corrosion inhibitor complex, shall be used to give a satisfactory bond between the zinc or zinc alloy coating and the conductive organic coating. 3.4.1 Conductive Inorganic/Zinc Complex 460 +/- 80 Coating Weight, as Cr, Measured by mg/m2 X-ray Fluorescence (ASTM B 568) 3.5 CON
13、DUCTIVE ORGANIC COATING This shall comprise of an epoxide binder (epoxy resin) modified with metallic particles (zinc and/or other conductive pigment). The control plan referred to in para 3.1 shall address coating composition and consistency of electrical conductivity. 3.5.1 Zinc-Rich Primer Coatin
14、g Thickness Cut a sample with a minimum coated surface area of 4500 mm2. Remove the oil and air dry according to para 3.11. Weigh to the nearest 1 mg. Remove all zinc-rich primer by repeated wiping with tissue soaked with 2-butanone solvent. Air dry and re-weigh. The thickness is calculated based on
15、 the zinc-rich primer density of 3.75 Mg/m3, according to the following equation: Weight Loss (mg) 1000 Thickness (micrometers) = - X - Surface Area (mm2) 3.75 The thickness shall be 9.0 microns (+ 2.5/- 1.5). 3.6 COATED SURFACE FINISH The material shall have a workmanlike appearance and shall not h
16、ave defects of a nature or degree for the grade and quality ordered that will be detrimental to the fabrication of the finished part. 3.7 COATED SURFACE PAINTABILITY Material supplied to this specification must have prior approval for paintability by the responsible Materials Engineering activity. T
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