FORD WSE-M2A154-A1-2014 ALUMINUM ALLOY CASTING THERMALLY TREATED CONDITION TO BE USED WITH FORD WSS-M99P1111-A .pdf
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1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions 2014 02 12 N Status Replaced by WSS-M2A178-A3 G. Weber, NA 2003 09 22 Revised Para 3.0 inserted; para 3.1, 3.6, 3.7 and 4 deleted 1994 08 26 NE01E10127076137 Released P. Lee, G. Lane Copyright 2014, Ford Global Technologies, Inc. Page 1 of 3
2、ALUMINUM ALLOY, CASTING, THERMALLY TREATED WSE-M2A154-A1 CONDITION NOT TO BE USED FOR NEW DESIGN 1. SCOPE The material defined by this specification is an aluminum-silicon-magnesium casting alloy in the solution treated and artificially aged condition. 2. APPLICATION This specification was released
3、originally for materials used in the manufacture of engine cylinder heads. 3. REQUIREMENTS 3.0 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 CHEMICAL COMPOSITION (
4、Weight Percent) Silicon 6.5 - 7.5 Copper 0.20 max Iron 0.20 max Magnesium 0.25 - 0.45 Nickel 0.05 max Manganese 0.10 max Zinc 0.10 max Titanium 0.08 - 0.25 Chromium 0.01 max Strontium 0.002 - 0.05 Others 0.05 each max 0.5 total max Aluminum Balance Eutectic modification shall be achieved with stront
5、ium additions. The composition shall be selected from within the above range in order to meet castability, soundness, machinability consistency, microstructural and strength requirements. The specific composition limits and foundry practice to meet performance and manufacturing requirements will for
6、m part of the Control Plan for each individual component geometry, and supplier. ENGINEERING MATERIAL SPECIFICATION WSE-M2A154-A1 Copyright 2014, Ford Global Technologies, Inc. Page 2 of 3 3.3 QUALITY 3.3.1 General (ASTM E 155) The finished component must be free from laps, cold shuts, dross, sludge
7、, and shall have 1% eutectic segregation/depletion per microstructural evaluation. Gas holes/porosity and shrinkage porosity radiographic assessment levels, shall be according to methods of the above standard. Visual methods shall be as the following: 3.3.1.1 Critical Areas (Per Engineering Drawing)
8、 In a micrographic sample taken from the locations as described on the Engineering Drawing, the porosity area percent shall be determined visually by taking the average of 10 areas or fields to be specified in Suppliers Control Plan, and on Engineering Drawing, viewed at 100X. At least three of the
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