FORD ESF-M99G152-A-2000 CARBON BRUSH MATERIAL (2000-2500 MICRO OHM X CM SPECIFIC RESISTANCE)《(2000-2500 MICRO OHM X CM比电阻)碳刷材料》.pdf
《FORD ESF-M99G152-A-2000 CARBON BRUSH MATERIAL (2000-2500 MICRO OHM X CM SPECIFIC RESISTANCE)《(2000-2500 MICRO OHM X CM比电阻)碳刷材料》.pdf》由会员分享,可在线阅读,更多相关《FORD ESF-M99G152-A-2000 CARBON BRUSH MATERIAL (2000-2500 MICRO OHM X CM SPECIFIC RESISTANCE)《(2000-2500 MICRO OHM X CM比电阻)碳刷材料》.pdf(4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 2000 09 25 Revised Updated and renumbered A. Cockman 1987 - 12 - 01 CF4R RD 107 002 - 87 878788787 Released Printed copies are uncontrolled Page 1 of 4 Copyright 2000, Ford Global Technologies, Inc. CARBON B
2、RUSH MATERIAL ESF-M99G152-A (2000-2500 micro ohm x cm SPECIFIC RESISTANCE) 1. SCOPE The material defined by this specification is a hard carbon brush. 2. APPLICATION This specification was released originally for material used as a carb on brush in fuel pump motors. 3. REQUIREMENTS Material specific
3、ation requirements are to be used for initial qualification of materials. 3.1 QUALITY SYSTEM REQUIREMENTS Material suppliers and part producers must conform to the Companys Quality System Requirements. 3.2 SPECIFIC RESISTANCE 2000 - 2500 micro ohm x cm Test Method: The apparatus consists of 2 jaws w
4、hich can be closed firmly against the ends of the test specimen. The jaws should be faced with silver - plated copper gauze, backed with res ilient pads to insure uniform current distribution into the ends of the piece. The size of the test specimen is immaterial, providing it fulfills the following
5、 requirement for accurate results. The length should be at least 4 times the width and thicknes s dimensions and the spacing between pointers should be no more than 1/2 the length of the specimen. For a test specimen the specific resistance is defined as follows: r = E x A I x L x 1000 Where: r = sp
6、ecific resistance in micro ohm x cm E - millivolt drop between pointers ENGINEERING MATERIAL SPECIFICATION ESF-M99G152-A Page 2 of 4 Copyright 2000, Ford Global Te chnologies, Inc. A = cross - sectional area, cm 2 I = current in amperes L = pointer spacing, cm The convenient method for obtaining rea
7、dings of specific resistance that are a multiplier of the potential drop in millivolts is to proceed as follows: Use voltmeter (or millivoltmeter) pointers that are accurately spaced 2 cm apart. Set the current at 1.97 times the value of the cross - sectional area of the specimen in square centimete
8、rs: r (micro ohm x cm) = E x A x 1000 = E x A x 2 x 1000 = 254E I x L 1.97A If the specimen is not long enough to use a 2 cm spacing between pointers, another method is to make the pointer spacing equal to the width of the specimen, and the current setting 3.94 times the thickness , then: r (micro o
9、hm x cm) = E x A x 1000 = E x W x T x 1000 = 254E I x L 3.94 T x W 3.3 SCLEROSCOPE HARDNESS 25 - 45 Test Method: Use a Shore Scleroscope instrument with a diamond - pointed steel hammer standardized for carb on. Mount and level the instrument on a firm support. The anvil of the instrument must be ke
10、pt clean at all times. The material is placed on the anvil, and the tube is lowered firmly against the test piece. At least 6 readings (in different areas) shou ld be taken on each specimen to obtain average hardness. 3.4 APPARENT DENSITY 2.0 - 2.2 g/cm 3 Test Method: The apparent density is the den
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