FORD WSS-M1A271-B-2002 STEEL COIL AND LEAF SPRINGS TO BE USED WITH FORD WSS-M99P1111-A 《盘簧和板簧用钢 与标准FORD WSS-M99P1111-A一起使用 [替代 FORD WSD-M1A271-A4 FORD WSD-M1A271-A12]》.pdf
《FORD WSS-M1A271-B-2002 STEEL COIL AND LEAF SPRINGS TO BE USED WITH FORD WSS-M99P1111-A 《盘簧和板簧用钢 与标准FORD WSS-M99P1111-A一起使用 [替代 FORD WSD-M1A271-A4 FORD WSD-M1A271-A12]》.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M1A271-B-2002 STEEL COIL AND LEAF SPRINGS TO BE USED WITH FORD WSS-M99P1111-A 《盘簧和板簧用钢 与标准FORD WSS-M99P1111-A一起使用 [替代 FORD WSD-M1A271-A4 FORD WSD-M1A271-A12]》.pdf(6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 23 Revised Updated and renumbered 1998 09 23 Activated K. Thurgood (FAO) Printed copies are uncontrolled Page 1 of 6 Copyright 2002, Ford Global Technologies, Inc. STEEL, COIL AND LEAF SPRINGS WSS-M1
2、A271-B 1. SCOPE The materials described by this specification are alloy spring steels. 2. APPLICATION These materials were released originally for use in the manufacture of suspension springs. Coils and individual leaves may be specified on the drawings as either uniform thickness of section or as v
3、arying thickness of section. 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 SYSTEMS APPROVAL The materials described by this specification shall
4、 be subject to a source “Systems Approval,“ i.e. both the component supplier and steel supplier shall be approved in tandem. 3.3 GENERAL REQUIREMENTS Coil springs shall be made from ground bar, or bar from which the decarburized layer has been removed. 3.4 REQUIREMENTS FOR FINISHED SPRINGS 3.4.1 Gen
5、eral Restrictions 3.4.1.1 The component drawing may specify a restricted list of steel types together with other requirements such as hardness, surface condition, peening control, etc., which have been applied to springs that have successfully met the rig and durability requirements. 3.4.1.2 No stee
6、l other than those proved to be acceptable by prototype testing may be used in production unless prior approval from Ford Product Development is obtained. ENGINEERING MATERIAL SPECIFICATION WSS-M1A271-B Page 2 of 6 Copyright 2002, Ford Global Technologies, Inc. 3.4.1.3 The component engineer must be
7、 supplied with the composition and properties of each batch of prototype springs. 3.4.2 Chemical Composition This shall form part of the Control Plan. General information is shown in para 4.3. 3.4.3 Non-metallic Impurities Inclusion Type: A B C D T H T H T H T H Silicon Steel 3.5 2 3 1.5 2.5 1.5 2 1
8、.5 Non-silicon 3.5 2 3 1.5 1.5 1 2 1.5 Steel T = Thin Series H = Heavy Series There is no requirement on sulfide inclusions (Type A) when the sulfur content is 0.035 % or less. The above requirement is either on billets to ASTM E 45 Method A or on finished springs to FLTM EU-BA 051-02. Alternatively
9、 the Stahl-Eisen Prufblatt 1570-71 method may be used: K4 value 20 maximum (oxides only). If the sulfur content is greater than 0.035 % the limits in the above table apply. 3.4.4 Grain Size The steel shall have an austenitic grain size of 5 or finer. 3.4.5 Decarburization (FLTM EU-BA 053-01) The fol
10、lowing limits of decarburization shall apply to the finished spring. Coil Springs Up to 13 mm diameter Complete decarburization Nil Total decarburization - 0.15 mm maximum ENGINEERING MATERIAL SPECIFICATION WSS-M1A271-B Page 3 of 6 Copyright 2002, Ford Global Technologies, Inc. Above 13 mm diameter
11、Complete decarburization - Nil Total decarburization - 0.20 mm maximum Leaf Springs (Silicon Steels) Up to and including Complete decarburization - 0.05 7 mm thick maximum Total decarburization - 0.25 mm maximum Over 7 mm and up to Complete decarburization - 0.05 and including 14 mm maximum thick To
12、tal decarburization - 0.35 mm maximum Above 14 mm thick Complete decarburization - 0.05 mm maximum Total decarburization 2.5 % of the spring thickness at sectioned position. Leaf Springs (Nonsilicon Steels) Up to 12.5 mm thick Complete decarburization - 0.05 mm maximum Total decarburization - 0.25 m
13、m maximum Above 12.5 mm thick Complete decarburization - 0.05 mm maximum Total decarburization 2 % of the spring thickness at sectioned position. 3.4.6 Hardenability The steel used shall be chosen and controlled to have adequate hardenability for the section size of the spring. Its hardenability sha
14、ll be ensured by progressing a pilot sample of the stock through the production heat treatment and conforming to para 3.4.6.1 and 3.4.6.2. 3.4.6.1 Hardness “As Quenched“ After removing any decarburized layer, the surface hardness must be: HRC 56 minimum or HB* 555 minimum or HV/30 610 minimum ENGINE
15、ERING MATERIAL SPECIFICATION WSS-M1A271-B Page 4 of 6 Copyright 2002, Ford Global Technologies, Inc. *Using Tungsten Carbide Ball or Cemented Alloy Carbide Ball. The surface must be free from cracks when examined immediately after quenching. 3.4.6.2 Hardness after Tempering After tempering to the ha
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