FORD WSB-M1L132-A1-2003 CABLE LOW TENSION POLYURETHANE INSULATED 80 HEAVY WALL COILED AND FLEXIBLE TO BE USED WITH FORD WSS-M99P1111-A 《厚护皮型最高工作温度80℃的聚氨酯绝缘的低压电缆 与标准FORD WSS-M99P.pdf
《FORD WSB-M1L132-A1-2003 CABLE LOW TENSION POLYURETHANE INSULATED 80 HEAVY WALL COILED AND FLEXIBLE TO BE USED WITH FORD WSS-M99P1111-A 《厚护皮型最高工作温度80℃的聚氨酯绝缘的低压电缆 与标准FORD WSS-M99P.pdf》由会员分享,可在线阅读,更多相关《FORD WSB-M1L132-A1-2003 CABLE LOW TENSION POLYURETHANE INSULATED 80 HEAVY WALL COILED AND FLEXIBLE TO BE USED WITH FORD WSS-M99P1111-A 《厚护皮型最高工作温度80℃的聚氨酯绝缘的低压电缆 与标准FORD WSS-M99P.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATIONDate Action Revisions 2003 06 23 Revised Para 3.0 inserted; Para 3.1, 3.2, 3.3, 3.11, 3.12, 4 deleted 1994 02 25 NB00I10043054315 Released J. Showalter Printed copies are uncontrolled Copyright 2003, Ford Global Technologies, Inc. Page 1 of 5 CABLE, LOW TENSION, PO
2、LYURETHANE INSULATED, 80 C, WSB-M1L132-A1 HEAVY WALL, COILED AND FLEXIBLE 1. SCOPE The material defined by this specification is a low tension stranded, heavy wall, polyurethane insulated cable. It is a coiled flexible cable capable of withstanding 80 C. 2. APPLICATION This specification was release
3、d originally for a cable used to supply electrical power to accessories mounted on the lift gate (such as the rear window wiper motor). Note: The assemblers of electrical wire harnesses shall use the bulk wire suppliers as shown in the Ford Motor Company Approved Source List. 3. REQUIREMENTS 3.0 STA
4、NDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.4 CONSTRUCTION 3.4.1 Conductor (See Table 1) Conductor Diameter: The diameter of individual strands and finished conductor
5、 may be measured using a machinist micrometer, laser micrometer or other suitable measuring instruments readable to at least 0.01 mm. Circular Mil Area: Take a section of uninsulated conductor and measure the individual strand diameters using a machinist micrometer, laser micrometer or other suitabl
6、e measuring instruments readable to at least 0.01 mm. Calculate the average strand diameter, then determine the cross sectional circular mil area by squaring the diameter of strands in mils and then multiplying by the number of strands. Conductor Stranding: Unless otherwise specified, the individual
7、 strands of the conductor shall be soft or annealed copper conforming to ASTM B 3. The conductor shall be rope lay stranded copper having bunched members employing 36 AWG single end wire similar to arrangements found in ASTM B 172. The maximum lay lengths shall be as specified in ASTM B 172. (Note:
8、ASTM B 172 does not define a class for the 36 AWG single end rope lay stranded wire as called out in this specification). ENGINEERING MATERIAL SPECIFICATIONWSB-M1L132-A1Printed copies are uncontrolled Copyright 2003, Ford Global Technologies, Inc. Page 2 of 5 3.4.2 Insulation Wall Thickness (See Tab
9、le 1) Strip approximately 2.5 cm of insulation from the finished wire and make a 90 degree crosscut using a sharp razor blade. Using a Federal pin Gage, Shadow graph or equivalent optical measuring device, locate and measure the minimum and maximum insulation wall thickness. The average of the minim
10、um and maximum readings shall meet the values specified in Table 1. Note: Individual readings must not be less than the values specified in Table 1. 3.4.3 Cable Diameter (See Table 1) Take a suitable length of wire and measure the diameter of the cable using a machinist micrometer, laser micrometer
11、or equivalent. Check the diameter in four places rotating the wire 90 deg and record the average value of the four readings. 3.5 JOINTS Bunched strands at the joint must meet 80.0% of its original tensile strength. Note: Tensile strength and machine capability defined by SPC standard recommendation
12、must be established prior to making joints for production. Take a 300 mm sample of bunched conductor and place it in the jaws of a tensile pulling machine or equivalent. Set the jaw separation at 250 mm. Pull the tensile sample at a rate of 50 mm per minute. Record the maximum value obtained. Next,
13、repeat the test using a tensile sample containing a joint. Note: When checking the tensile strength of the joint, the joint must be centered between the jaws of the tensile machine. 3.6 COLOR TOLERANCE (See Table 2) The Munsell Color Tolerance set has the desired color in the center, surrounded by c
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