FORD WSS-M1A368-A85-2017 STEEL SHEET COLD ROLLED MARTENSITIC (CR MS) TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M1A368-A11).pdf
《FORD WSS-M1A368-A85-2017 STEEL SHEET COLD ROLLED MARTENSITIC (CR MS) TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M1A368-A11).pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M1A368-A85-2017 STEEL SHEET COLD ROLLED MARTENSITIC (CR MS) TO BE USED WITH FORD WSS-M99P1111-A (Shown on FORD WSS-M1A368-A11).pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATION Date Action Revisions Rev. 1 2017 09 08 Revised See Summary of Revisions D. Ruhno, NA 2012 01 10 Released D. Jordan, NA, A. Toennessen, EU Controlled document at www.MATS Copyright 2017, Ford Global Technologies, LLC Page 1 of 13 STEEL, SHEET, COLD ROLLED, DUAL PH
2、ASE (CR DP) WSS-M1A368-A/11/A12/A13/A14/A15 /A16 STEEL, SHEET, COLD ROLLED, ENHANCED DUAL PHASE (CR DH) WSS-M1A368-A26/A27 STEEL, SHEET, HOT ROLLED, DUAL PHASE (HR DP) WSS-M1A368-A31/A32 STEEL, SHEET, HOT ROLLED, FERRITE BAINITE (HR FB) WSS-M1A368-A42/A43 STEEL, SHEET, COLD ROLLED, RETAINED AUSTENIT
3、E (CR RA) WSS-M1A368-A53/A54/A55 STEEL, SHEET, COLD ROLLED, COMPLEX PHASE (CR MP) WSS-M1A368-A61/A62/A63 STEEL, SHEET, HOT ROLLED, COMPLEX PHASE (HR MP) WSS-M1A368-A71/A72 STEEL, SHEET, COLD ROLLED, MARTENSITIC (CR MS) WSS-M1A368-A81/A82/A83/A84/85 STEEL, SHEET, HOT ROLLED, MARTENSITIC (HR MS) WSS-M
4、1A368-A91 Note: Grades shown in gray typeface are not in the Global material strategy and should not be used without approval from the Global Sheet Metal Tech Club. 1. SCOPE The materials defined by these Global specifications are hot rolled or cold rolled steel sheet with specified tensile strength
5、s from 450 MPa to 1700 MPa, suitable for cold forming such as stamping, roll forming and tube making, and use in automotive applications. The specification applies to uncoated and coated steel sheet generally categorized as advanced high strength steels: - Dual Phase (ferrite and martensite microstr
6、ucture, including grades with low and high yield, DP) - Dual Phase Improved Formability (ferrite, martensite and retained austenite, DH) - Ferrite-Bainite (ferrite and bainite microstructure, High Hole Expansion, FB) - “Multi-Phase“ or “Complex Phase“ (ferrite, martensite, bainite plus precipitation
7、 hardening, MP) - Retained Austenite (designed with expected amounts of retained austenite, RA) - Martensitic (mainly martensitic microstructure, MS) The steel sheet may achieve its final thickness by cold rolling, hot rolling, continuous thin-strip casting, or other means. All requirements of the s
8、pecific variant are to be met regardless of the final thickness reduction method. Specification WSS-M1P94-A shall be used where pre-coating by the steel supplier is required. All requirements of the specific variant are to be met with or without pre-coating, except as noted in these specifications o
9、r as noted as exceptions on the Engineering Drawing. ENGINEERING MATERIAL SPECIFICATION WSS-M1A368-A11/A91 Copyright 2017, Ford Global Technologies, LLC Page 2 of 13 2. APPLICATION These Global specifications were released originally for automotive body and chassis parts. 2.1 LIMITATIONS Common Glob
10、al Grade Names are provided for information purposes and are not intended to be used on Engineering Drawings or CAD files. Not all grade / gauge / width / coating combinations are available. Contact Product Development Materials Engineering for assistance or Global Materials and Fastener Standards (
11、) for help in locating the responsible engineer. Variants shown with an asterisk and gray typeface in Tables 1-9 presently are not in the Global material strategy and should not be used without approval from the Sheet Metal Tech Club. Sources for these grades may not exist in your region. Contact Pr
12、oduct Development Materials Engineering for assistance or for help in locating the responsible engineer. High strength materials delivered to this specification may be sensitive to hydrogen assisted cracking. Electro galvanized products may require baking treatment. Material supplied to these speci
13、fications may contain titanium or other transition metals as alloying additions. Such alloyed steels, if subsequently surface treated by a nitrocarburising and/or oxidizing process, risk becoming embrittled due to the formation of ultrafine TiN or other precipitates. Accordingly, special considerati
14、on should be given to low carbon steel that contains intentional additions of titanium or other transition metals for parts that may be subjected to nitrocarburising and/or oxidizing processes. 3. REQUIREMENTS Note: Drawing Precedence Any part specific exceptions or restrictions of requirements list
15、ed in paragraph 3 shall be recorded on the part drawing and have to be considered in all engineering testing and attribute confirmation checklists. 3.1 APPROVED SOURCES This specification requires the use of approved sources. Only the sources identified on the Ford Approved Source List (ASL) can be
16、used when this specification is listed on the drawing, CAD file, or other documents. The list of approved sources is located within Ford at or available externally through a Ford Materials Engineer. See also paragraph 4.1. 3.2 CHEMICAL COMPOSITION AND MICROSTRUCTURE (ASTM E112, JIS G0320, ISO 4967
17、/ ASTM E45) 3.2.1 Chemical Composition The upper and lower limits of chemical composition of the controlled elements shall be established by the supplier and included in the suppliers Control Plan. Guidelines for chemical composition are provided in section 4.4. Heat and/or check analyses shall be p
18、rovided as part of the initial material source approval process in a format suitable for upload into the Ford Material Database. ENGINEERING MATERIAL SPECIFICATION WSS-M1A368-A11/A91 Copyright 2017, Ford Global Technologies, LLC Page 3 of 13 The choice of strengthening mechanism and the method of in
19、clusion control, inclusion shape control, and/or stabilization shall be identified for the specific process path in the suppliers Control Plan. 3.2.2 Microstructure The grain size number shall be established as part of the initial material source approval process and shall be consistent (within 1 un
20、it) throughout the thickness of the sheet. The steel sheet shall be free from internal defects that adversely affect manufacturing or part functionality. Examples of defects may include: pipe laminations, non-metallic inclusions, segregation, and blowholes. Non-metallic inclusion content shall not e
21、xceed a rating of 2.0 for thin and 2.0 for heavy when tested in accordance with ASTM E 45 Method D, Plate I-r, by analysis at 100X. 3.3 MECHANICAL PROPERTIES (ASTM E8M, ASTM E290, ASTM E646, ISO 6892-1, EN 10325, ISO 10275, ISO/TS 16630, JFS T 1001, JIS Z 2241, JIS Z2241) For initial approval requir
22、ements see paragraph 4.1. Mechanical properties listed are valid in longitudinal direction. Certification of ongoing production material shall be in accordance with regional and/or local requirements. For the determination of mechanical properties, the material cross sectional area shall be defined
23、as that of the steel substrate only; contribution of any metallic and/or organic coating to the cross-sectional area used for stress calculation is neglected. (i.e. Zn, e-coat and/or paint are not included). This method of determining the cross sectional area of the test bar will be used as the refe
24、ree method in all cases where the mechanical properties of the incoming material are in dispute. Yield Strength is defined as lower yield stress or 0.2% proof stress (for materials without marked yield point). ASTM Total Elongation is measured with an ASTM (50 mm) test bar (ASTM E 8M). EN Total Elon
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