FORD WSS-M2A175-A3-2015 ALUMINUM ALLOY SHEET HEAT TREATABLE STRUCTURAL HIGH STRENGTH LOW COPPER TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M2A175-A1).pdf
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1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev 03 2015 02 02 Editorial See Summary of Revisions C. Mracna, NA 2014 10 30 Revised Added T52; See Summary of Revisions C. Mracna, NA 2013 11 06 Released C. Mracna,NA Controlled document at www.MATS Copyright 2015, Ford Global Technologies,
2、 LLC Page 1 of 8 ALUMINUM ALLOY, SHEET, HEAT TREATABLE, STRUCTURAL, WSS-M2A175-A1 HIGH STRENGTH, THIN GAGE NOT TO BE USED FOR NEW DESIGN ALUMINUM ALLOY, SHEET, HEAT TREATABLE, STRUCTURAL, WSS-M2A175-A2 HIGH STRENGTH, THICK GAGE ALUMINUM ALLOY, SHEET, HEAT TREATABLE, STRUCTURAL, WSS-M2A175-A3 HIGH ST
3、RENGTH, LOW COPPER ALUMINUM ALLOY, SHEET, HEAT TREATABLE, STRUCTURAL, WSS-M2A175-A4 ENERGY ABSORPTION ALUMINUM ALLOY, SHEET, HEAT TREATABLE, STRUCTURAL, WSS-M2A175-A5 OVERAGED ALUMINUM ALLOY, SHEET, HEAT TREATABLE, STRUCTURAL, WSS-M2A175-A6 AIR QUENCHED, OVERAGED 1. SCOPE The materials defined by th
4、ese specifications are for direct cast, 6000 series, heat treatable aluminum sheet. Ford Motor Company may, at its option and in agreement with the local or regional supplier, define additional and/or restricted technical delivery requirements such as mechanical properties, forming characteristics,
5、and/or pretreatment for a specific grade and/or part. The defined requirements shall be mandatory and no characteristics shall conflict with these engineering specifications. 2. APPLICATION These global specifications were released originally for stamped automotive body parts. 2.1 LIMITATIONS The yi
6、eld strength of the material in the part after the paint baking process is a function of the amount of forming deformation and the time-temperature profile during the paint baking process. The mechanical property values shown in Table 2 apply only to the listed condition; individual parts will have
7、different properties, depending on specific processing in the vehicle manufacturing plants. 2.2 DEFINITIONS Variant A1 is a structural alloy with gage thicknesses less than or equal to 1.5 mm, typically applied to non-visible structural parts (Class 3) where high strength and modest ductility are re
8、quired. This variant is applicable to parts that may be susceptible to intergranular corrosion or stress corrosion cracking, or parts that will be heat treated after forming. ENGINEERING MATERIAL SPECIFICATION WSS-M2A175-A1/A2/A3/A4/A5/A6 Copyright 2015, Ford Global Technologies, LLC Page 2 of 9 Var
9、iant A2 is a structural alloy with gage thicknesses of 0.8 to 4.0 mm, typically applied to non-visible structural parts (Class 3) where high strength and modest ductility are required. This variant is applicable to parts that may be susceptible to intergranular corrosion or stress corrosion cracking
10、, or parts that will be heat treated after forming. Variant A3 is a low copper, structural alloy with gage thicknesses 0.8 to 4.0 mm, typically applied to non-visible structural parts (Class 3) where high strength and modest ductility are required. This variant is applicable to parts that may be sus
11、ceptible to intergranular corrosion or stress corrosion cracking, or parts that will be heat treated after forming. Variant A4 is an energy absorption alloy, typically applied to non-visible structural parts (Class 3) where controlled in-service deformation behavior and thermal stability are desired
12、. Variant A5 is a high formability, structural alloy with gage thicknesses greater than 1.5mm, typically applied to non-visible structural parts (Class 3). This variant is applicable for parts having design features that require the material to be stamped in O temper and subsequently require heat tr
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