GMW GMW14746-2011 Elastomeric Membrane - Brake Booster English Issue 2 [Replaced GME QE 050001]《制动助力器的弹性薄膜 第2次出版(英文版本)[代替 GME QE 050001]》.pdf
《GMW GMW14746-2011 Elastomeric Membrane - Brake Booster English Issue 2 [Replaced GME QE 050001]《制动助力器的弹性薄膜 第2次出版(英文版本)[代替 GME QE 050001]》.pdf》由会员分享,可在线阅读,更多相关《GMW GMW14746-2011 Elastomeric Membrane - Brake Booster English Issue 2 [Replaced GME QE 050001]《制动助力器的弹性薄膜 第2次出版(英文版本)[代替 GME QE 050001]》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、 WORLDWIDE ENGINEERING STANDARDS Material Specification GMW14746 Elastomeric Membrane - Brake Booster Copyright 2011 General Motors Company All Rights Reserved October 2011 Originating Department: North American Engineering Standards Page 1 of 4 1 Scope This specification covers the materials and pe
2、rformance of elastomeric membranes for brake boosters. 1.1 Material Description. Materials covered by this specification are divided into three types: 1.1.1 Type A. Styrene Butadiene Rubber (SBR), continuous operating temperature limit = 100 C. 1.1.2 Type B. Ethylene Propylene Diene Terpolymer (EPDM
3、) continuous operating temperature limit = 125 C. 1.1.3 Type C. Drawing defined (e.g., using SAE J200 or ASTM D2000 line callout). 1.2 Symbols. Not applicable. 1.3 Typical Applications. Not applicable. 1.4 Remarks. Not applicable. 2 References Note: Only the latest approved standards are applicable
4、unless otherwise specified. 2.1 External Standards/Specifications. ASTM D2000 ISO 1431-1 ISO 34-1 ISO 1817 ISO 37 ISO 23529 ISO 48 SAE J200 ISO 188 2.2 GM Standards/Specifications. GMW3059 GMW3356 2.3 Additional References. TMC003 Material Safety Data Sheet guidance documents (available at ). 3 Requ
5、irements 3.1 Resources. 3.1.1 Test Samples. Unless otherwise specified, the shape, size and number of test pieces shall be in accordance with the relevant Test Method. Unless otherwise specified, samples are finished parts or to be taken from finished parts. If not otherwise stated, mechanical prope
6、rties in delivery state and after heat or fluid immersion are to be tested at +23 C and with the same test methods. 3.1.2 Conditioning. Conditioning shall be as specified in the relevant Test Method. 3.1.3 Equipment. Conforming to the relevant Test Method. 3.1.4 Calibration. The test facilities and
7、equipment shall be in good working order and shall have a valid calibration label. 3.1.5 Alternatives. Alternative test facilities and equipment may also be used. However, all measuring variables as specified in this specification shall be determined correctly with respect to its physical definition
8、. 3.1.6 Facilities. Conforming to the relevant Test Method. 3.1.7 Deviations. Deviations from the requirements of this specification shall have been agreed upon. Such deviations shall be specified on component drawings, test certificates, reports, etc. 3.2 Material and Performance Requirements. Mate
9、rial and performance requirements are summarized in Table 1. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14746 Copyright 2011 General Motors Company All Rights Reserved October 2011 Page 2 of 4 Table 1: Mater
10、ial and Performance Properties Property Test Method Unit Value Hardness Types A and B ISO 48 Method M IRHD 65 +5/-10 Type C As specified on drawing/math data file Shore A As specified on drawing Elongation at Break Types A and B ISO 37, Type 4 dumbbell, 200 20 mm/minute % 300 minimum Type C As speci
11、fied on drawing/math data file % As specified on drawing Tensile Strength Types A and B ISO 37, Type 4 dumbbell, 200 20 mm/minute MPa 15 minimum Type C As specified on drawing/math data file MPa As specified on drawing Tensile Modulus at 100% Elongation Types A and B ISO 37, Type 4 dumbbell, 200 20
12、mm/minute MPa 1.5 minimum Type C As specified on drawing/math data file MPa As specified on drawing Tear Strength Types A and B Tear strength to ISO 34-1 Method A (trouser test piece) N/mm 4 minimum Type C As specified on drawing/math data file N/mm As specified on drawing Age Resistance (Heat Aging
13、) Type A ISO 188 Method B, 168 -2 h at +100 3 C Change in Hardness Change in Elongation at Break Change in Tensile Strength Change in Tear Strength Tensile Modulus at 100% Elongation IRHD % % % MPa +10 maximum -40 maximum -30 maximum -40 maximum 3 minimum Type B ISO 188 Method B, 168 -2 h at +125 3
14、C Change in Hardness Change in Elongation at Break Change in Tensile Strength Change in Tear Strength Tensile Modulus at 100% Elongation IRHD % % % MPa +10 maximum -50 maximum -35 maximum -50 maximum 3 minimum Type C As specified on drawing/math data file As specified on drawing Resistance to Brake
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