SAE J 2031-2012 High Tension Ignition Cable《高压点火电缆》.pdf
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1、_ SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising there
2、from, is the sole responsibility of the user.” SAE reviews each technical report at least every five years at which time it may be revised, reaffirmed, stabilized, or cancelled. SAE invites your written comments and suggestions. Copyright 2014 SAE International All rights reserved. No part of this p
3、ublication may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE. TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada) Tel: +1 724-776-497
4、0 (outside USA) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.org SAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/J2031_201408 SURFACE VEHICLE STANDARD J2031 AUG2014 Issued 1990-01 Reaffirmed 201
5、4-08 Superseding J2031 FEB2012 High Tension Ignition CableRATIONALE J2031 has been reaffirmed to comply with the SAE five-year review policy. 1. SCOPE The specifications contained in this SAE Standard pertain to high tension ignition cable used in road vehicle engine ignition systems. 2. REFERENCES
6、2.1 Applicable Documents The following publications form a part of this specification to the extent specified herein. Unless otherwise indicated, the latest issue of SAE publications shall apply. 2.1.1 UL Publication Available from Underwriters Laboratories Inc., 333 Pfingsten Road, Northbrook, FL 6
7、0062-2096, Tel: 847-272-8800, . UL 1581 Reference Standard for Electrical Wires, Cables, and Flexible Cords 2.2 Related Publications The following publications are provided for information purposes only and are not a required part of this SAE Technical Report. 2.2.1 ASTM Publication Available from A
8、STM International, 100 Barr Harbor Drive, P.O. Box C700, West Conshohocken, PA 19428-2959, Tel: 610-832-9585, www.astm.org ASTM D 471 Standard Test Method for Rubber Property - Effect of Liquids 2.2.2 SAE Publication Available from SAE International, 400 Commonwealth Drive, Warrendale, PA 15096-0001
9、, Tel: 877-606-7323 (inside USA and Canada) or 724-776-4970 (outside USA), www.sae.org. SAE J2032 Ignition Cable Assemblies 3. CABLE DIMENSIONS The average overall diameter of finished cable shall be 5 mm, 7 mm, or 8 mm. Other sizes are acceptable and dimensional control for these will be as agreed
10、on by manufacturer and customer. Allowable tolerance for either size shall be 0.3 mm. The average overall diameter shall be determined by taking the average of five sets of measurements along a 1 m length of finished cable. Each set of measurements shall consist of the determination of the maximum a
11、nd minimum diameter at the point of measurement. 4. TEST REQUIREMENTS When tested according to the methods outlined, the ignition cables covered by this document shall be capable of complying with the applicable requirements specified herein. Test methods and requirements for cable constructions oth
12、er than those specified previously will be as agreed on by manufacturer and customer. Figure 1 defines the applicability of the test and provides specific performance criteria. NOTE: Wherever the term “room temperature” is used, it shall be defined as 23 C 5 C. NOTE: Wherever the term “full draft, c
13、irculating-air oven” is used, the air shall be completely exchanged at least 8 times per h, but no more than 20 times per h. 4.1 Spark Test When agreed upon by the manufacturer and customer, an AC spark test shall be performed on 100% of production of each ignition wire to which it is applicable (se
14、e Figure 1). Apparatus shall consist of a voltage source, electrode, voltmeter, fault-current device or system, and the necessary electrical connections. The recommended apparatus and test method shall be that described in UL 1581, Section 900. Test potential shall be 25 kV for 5 mm, 25 kV for 7 mm
15、cable, and 30 kV for 7 mm High Energy or 8 mm cable. NOTE: This test is not a qualification test but an in-process test carried out under production conditions. Alternate methods for this test may be considered provided that insulation faults are detected with the same degree of certainty. 4.2 High
16、Potential Test Refer to A.1 in Appendix A for test apparatus. Immerse an approximate 1200 mm specimen for 4 h in a salt solution (3% m/m of NaCl in water) at room temperature with the ends twisted together and emerging approximately 400 mm above the surface of the solution. Apply a test voltage of 2
17、0 kV (rms) for 30 min between the conductor and the solution. NOTE: The applied potential is to be increased from near zero at an essentially uniform rate not to exceed 500 V/s. The cable shall not break down. Then increase the voltage at a rate not exceeding 500 V/s to the following levels: 5 mm ca
18、ble - 25 kV (rms) 7 mm cable - 30 kV (rms) 7 mm High Energy cable - 35 kV (rms) 8 mm cable - 35 kV (rms) Cable breakdown shall not occur below the voltage indicated. SAE INTERNATIONAL J2031 Reaffirmed AUG2014 Page 2 of 11_ FIGURE 1 - TEST APPLICABILITY AND PERFORMANCE CRITERIA SAE INTERNATIONAL J203
19、1 Reaffirmed AUG2014 Page 3 of 11_ 4.3 Capacitance Soak an approximate 1200 mm specimen in a salt solution (3% m/m NaCl in water) at 70 C 2 C for 24 h with each end of the cable emerging approximately 100 mm above the surface of the solution. Measure the capacitance between the conductor and the sol
20、ution. Immerse the same specimen in tap water at 23 C 2 C for 1 h with each end of the cable emerging approximately 100 mm above the surface of the water. Again, measure the capacitance between the conductor and the water. The frequency applicable to both measurements shall be 1000 Hz. Measured capa
21、citance values shall not exceed those agreed on between the cable manufacturer and the user. 4.4 Corona Resistance Affix an approximate 1200 mm specimen to a mandrel as specified in A.2 in Appendix A. Apply the test potential specified in Figure 1 for a period of 8 h. NOTE: The applied potential is
22、to be increased from near zero at an essentially uniform rate not to exceed 500 V/s. There shall be no breakdown of the cable, nor shall the surface of the specimen exhibit any cracks, fractures, or other defects. 4.5 Deformation Test Determine the average thickness of the covering(s) over the condu
23、ctor of an approximate 100 mm specimen of finished cable. Mount the specimen into the test apparatus shown in A.3 in Appendix A and load with the following mass: 5 mm cable - 312 g (include mass of test frame) 7 mm cable - 450 g (include mass of test frame) 7 mm High Energy cable - 450 g (include ma
24、ss of test frame) 8 mm cable - 510 g (include mass of test frame) Place the test unit into a full draft, circulating air oven maintained at the temperature specified in Figure 1 for a period of 4 h. Remove the test unit from the oven and cool within 10 s by immersing in cold water. Remove the specim
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