FORD ESF-M6A69-A6-2003 COPPER GRAPHITE ELECTRIC MOTOR BRUSH MATERIAL (50-190 MICRO OHMS CM RESISTIVITY) TO BE USED WITH FORD WSS-M99P1111-A 《铜-石墨电机电刷材料(50-100 MICRO OHMS CM电阻) 与.pdf
《FORD ESF-M6A69-A6-2003 COPPER GRAPHITE ELECTRIC MOTOR BRUSH MATERIAL (50-190 MICRO OHMS CM RESISTIVITY) TO BE USED WITH FORD WSS-M99P1111-A 《铜-石墨电机电刷材料(50-100 MICRO OHMS CM电阻) 与.pdf》由会员分享,可在线阅读,更多相关《FORD ESF-M6A69-A6-2003 COPPER GRAPHITE ELECTRIC MOTOR BRUSH MATERIAL (50-190 MICRO OHMS CM RESISTIVITY) TO BE USED WITH FORD WSS-M99P1111-A 《铜-石墨电机电刷材料(50-100 MICRO OHMS CM电阻) 与.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATIONDate Action Revisions 2003 09 30 Revised Para 3.0 inserted; para 3.5, 3.6 and 4 deleted 1994 03 31 NGA1E10370437003 Released -A8 A.Vallabhanath 1964 01 30 F6-1217 Released Printed copies are uncontrolled Copyright 2003, Ford Global Technologies, Inc. Page 1 of 4 CO
2、PPER GRAPHITE ELECTRIC MOTOR BRUSH MATERIAL ESF-M6A69-A (25-190 micro ohms.cm RESISTIVITY) COPPER GRAPHITE ELECTRIC MOTOR BRUSH MATERIAL ESF-M6A69-A2 (170-350 micro ohms.cm RESISTIVITY) COPPER GRAPHITE ELECTRIC MOTOR BRUSH MATERIAL ESF-M6A69-A3 (100-500 micro ohms.cm RESISTIVITY) COPPER GRAPHITE ELE
3、CTRIC MOTOR BRUSH MATERIAL ESF-M6A69-A4 (250-2500 micro ohms.cm RESISTIVITY) COPPER GRAPHITE ELECTRIC MOTOR BRUSH MATERIAL WSF-M6A69-A5 (25-150 micro ohms.cm RESISTIVITY) COPPER GRAPHITE ELECTRIC MOTOR BRUSH MATERIAL ESF-M6A69-A6 (50-190 micro ohms.cm RESISTIVITY) COPPER GRAPHITE ELECTRIC MOTOR BRUS
4、H MATERIAL WSF-M6A69-A7 (13-110 micro ohms.cm RESISTIVITY) COPPER GRAPHITE ELECTRIC MOTOR BRUSH MATERIAL WSF-M6A69-A8 (8-35 micro ohms.cm) 1. SCOPE The materials defined by these specifications are copper graphite for electric motor brushes. 2. APPLICATION These specifications were released original
5、ly for material used as the commutator brush for the heater motors, starter motors etc. 3. REQUIREMENTS 3.0 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.1 RESISTIVI
6、TY ESF-M6A69-A 25 - 190 micro ohms.cm ESF-M6A69-A2 170 - 350 micro ohms.cm ESF-M6A69-A3 100 - 500 micro ohms.cm ESF-M6A69-A4 250 - 2500 micro ohms.cm WSF-M6A69-A5 25 - 150 micro ohms.cm ESF-M6A69-A6 50 - 190 micro ohms.cm WSF-M6A69-A7 13 - 110 micro ohms.cm WSF-M6A69-A8 8 - 35 micro ohms.cm ENGINEER
7、ING MATERIAL SPECIFICATIONESF-M6A69-A/A2/A3/A4/A6WSF-M6A69-A5/A7/A8Printed copies are uncontrolled Copyright 2003, Ford Global Technologies, Inc. Page 2 of 4 Test Method: The apparatus consists of 2 jaws which can be closed firmly against the ends of the test specimen. The jaws should be faced with
8、silver-plated copper gauze, backed with resilient 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 requirement for accurate results. The length should be at least 4 times the width and thickness d
9、imensions and the spacing between pointers should be no more than 1/2 the length of the specimen. For a test specimen the resistivity is defined as follows: r = (E x A x 1000)/(I x L) where: r = resistivity in micro ohms.cm E = millivolt drop between pointers A = cross-sectional area, cm2I = current
10、 in amperes L = pointer spacing, cm The convenient method for obtaining readings of resistivity that are a multiplier of the potential drop in millivolts is to proceed as follows: Test Method: Use a voltmeter (or millivoltmeter) with pointers that are accurately spaced 2 cm apart. Set the current at
11、 1.97 times the value of the cross-sectional area of the specimen in square centimeters: r micro ohms.cm = (E x A x 1000)/(I x L) then r = (E x A x 1000)/(1.97 A x 2) then r = 254E If the specimen is not long enough to use a 2 cm spacing between pointers, another method is to make the pointer spacin
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