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    SAE J 1067-2016 Seven Conductor Cable - Truck and Bus.pdf

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    SAE J 1067-2016 Seven Conductor Cable - Truck and Bus.pdf

    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 theref

    2、rom, 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 2016 SAE InternationalAll rights reserved. No part of this publi

    3、cation 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: +1 724-776-4970 (out

    4、side USA)Fax: 724-776-0790Email: CustomerServicesae.orgSAE WEB ADDRESS: http:/www.sae.orgSAE values your input. To provide feedback on this Technical Report, please visitHTTP:/STANDARDS.SAE.ORG/J1067_201610SURFACE VEHICLESTANDARDJ1067 OCT2016Issued 1973-10Revised 2016-10Superseding J1067 AUG2012Seve

    5、n Conductor Cable - Truck and BusRATIONALEThe SAE document was reviewed and revised to remove lead reference ASTM B189 in section 2.1.2 and 6.1.1. Also in section 3.1 the .5m referenced in inches changed from 18 inch to 19.7 inch.FOREWORDThis document has been re-published for tractors or trailers t

    6、hat are not equipped with ABS as the wire size of the ABS circuit in this standard is insufficient to effectively power ABS. The use of the superseding SAE J2394 standard that does support ABS power is strongly recommended.1. SCOPEThis SAE standard establishes the minimum construction and performanc

    7、e requirements for seven conductor 1/8-1/10-5/12 cable for use on trucks, trailers and converter dollies. Where appropriate, the standard refers to two types of cables, (Type F and S, described later in the standard), due to the variation in the performance demands of cables used in flexing and stat

    8、ionary applications. 2. REFERENCES2.1 Applicable DocumentsThe following publications form a part of this specification to the extent specified herein. Unless otherwise indicated, thelatest version of SAE publications shall apply.2.1.1 SAE PublicationsAvailable from SAE International, 400 Commonwealt

    9、h Drive, Warrendale, PA 15096-0001, Tel: 877-606-7323 (inside USA and Canada) or +1 724-776-4970 (outside USA), www.sae.org.SAE J844 Nonmetallic Air Brake System TubingSAE J1128 Low Voltage Primary CableSAE J2394 Seven Conductor Cable for ABS Power - Truck and BusSAE INTERNATIONAL J1067 OCT2016 Page

    10、 2 of 92.1.2 ASTM PublicationsAvailable from ASTM International, 100 Barr Harbor Drive, P.O. Box C700, West Conshohocken, PA 19428-2959, Tel: 610-832-9585, www.astm.orgASTM B 3 Specification for Soft or Annealed Copper WireASTM B 33 Specification for Tinned Soft or Annealed Copper Wire for Electrica

    11、l PurposesASTM B 117 Method of Salt Spray (Fog) TestingASTM B 172 Specification for Rope Lay Stranded Copper Conductors Having Bunch-Stranded Members for Electrical ConductorsASTM B 174 Specification for Bunch-Stranded Copper Conductors for Electrical ConductorsASTM B 263 Standard Test Method for De

    12、termination of Cross-Sectional Area of Standard ConductorsASTM D 412 Standard Test Methods for Vulcanized Rubber and Thermoplastic Rubbers and Thermoplastic ElastomersTension2.1.3 UL (Underwriters Laboratory) PublicationsAvailable from Underwriters Laboratories Inc., 333 Pfingsten Road, Northbrook,

    13、IL 60062-2096, Tel: 847-272-8800, .UL 1581 Reference Standard for Electrical Wires, Cables, and Flexible CordsSection 5933. DEFINITIONS3.1 FLEXINGDescribes a condition where the cable is installed in an unsupported way over a distance of greater than 0.5 m (19.7 inch)and/or where there is a reasonab

    14、le likelihood that the cable will be subjected to bending, longitudinal extension, or significant movement. As an example all cables connecting the tractor to trailer or dolly to trailer are to be considered flexing cables.3.2 STATIONARYDescribes a condition where the cable is installed in a fashion

    15、 where its weight is supported within a distance of 0.5 m (19.7inch) or less, and where there is little likelihood of flexing as described above. An example of a stationary application is cable that is connected with clamps to a vehicle chassis.3.3 CONDUCTORThe current carrying element(s) in a cable

    16、 comprised of a series of copper strands twisted together.3.4 STRANDThe solid component members of a conductor.3.5 LAYThe measure along a single plane, between an individual strand or series of copper strands or insulated conductors starting and ending points in a complete spiral wrap around the gro

    17、uping of which it is a part.3.6 INSULATIONThe material applied to the conductor to provide electrical insulation and a level of mechanical protection.SAE INTERNATIONAL J1067 OCT2016 Page 3 of 93.7 CABLE COREThe grouping of insulated conductors twisted together. 3.8 JACKETThe outer sheath applied to

    18、the cable core to maintain inner conductor positioning and to enhance the mechanical strength and durability of the cable.4. TYPESDue to the variation in the performance demands of cables used in different applications within the truck-trailer system, this document addresses two types of cables, det

    19、ermined by their mode of installation.4.1 Type F - FlexingPertains to cables that are subjected to flexing as defined in Section 3.1.4.2 Type S - StationaryPertains to cables that are stationary as defined in Section 3.2.5. IDENTIFICATION CODE DESIGNATIONCable conforming to this document shall be id

    20、entified with the manufacturers identification, and shall be identified with SAEJ1067 and the revision (month and year) of this document along with the cable type as described in this document.EXAMPLE: XYZ Corp. SAE J1067 (mo/yr) - Type S (or F)6. TECHNICAL REQUIREMENTS6.1 Conductors6.1.1 MaterialAl

    21、l conductors shall be of stranded, soft-annealed copper, complying with ASTM B 3, and ASTM B 174-Class K or ASTM B 172-Class K. Strands may be uncoated or may be coated in a tin complying with ASTM B 33.6.1.2 Cross-Sectional AreaThe cross-sectional area of stranded conductors shall not be less that

    22、the values specified in Table 1. The cross-sectional area may be verified by measuring actual strand sizes or by using the weight method in ASTM B 263 with a calculated factor to allow for the twist loss.6.1.3 StrandingThe individual strands contained within a conductor shall be of the same nominal

    23、diameter. The minimum number of strands per wire size for the two types of cable covered by this document, are as shown in Table 1.6.1.4 Strand LayThe maximum acceptable lay of strands for each wire size, regardless of the number of strands in the conductor, is as shown in Table 1.6.1.5 Conductor Sp

    24、licingWhen agreed between the supplier and purchaser, splices may be used for the individual strands or for the conductor as a whole, provided that they are made in a workmanlike manner as described in ASTM B 172-95/174, and that they fulfill the following criteria:SAE INTERNATIONAL J1067 OCT2016 Pa

    25、ge 4 of 96.1.5.1 The break strength shall not be reduced by more than 20%.6.1.5.2 The resistance shall not be increased.6.1.5.3 The diameter of the splice must not exceed the diameter of the uninsulated strand or conductor being spliced by more than 20%.6.1.5.4 Single strand splices are not to be cl

    26、oser together than two lay lengths in a bunched or concentric stranded conductor and twenty lay lengths in a rope-lay construction and there shall be no more than three single strand splices per 3 m of conductor.6.1.5.5 Whole conductor splices are not to be closer together than twenty conductor lay

    27、lengths in the cable core and there shall be no more than three whole conductor splices per 100 m of cable.Table 1 - ConductorsSAEWire Sizemm2METRICMin. Cond.Areamm2Max. StrandLay LengthmmType F(Flexing)Min. StrandsType S(Stationary)Min. StrandsSAEWire SizeNo.ENGLISHMin. Cond.Areacir milsMax. Strand

    28、Lay LengthInches3 3.24 70 65 19 12 6334 2.755 5.16 64 104 19 10 10069 2.508 8.20 76 168 19 8 16104 3.00NOTE 1: English units are not direct conversions from metric.NOTE 2: The metric wire size is the approximate nominal area of the conductor.NOTE 3: The SAE wire size number indicates that the cross-

    29、sectional area of the conductor approximates the area of the American Wire Gauge for the equivalent size.6.2 Insulation6.2.1 Material Physical PropertiesThe unaged physical properties of insulation material, tested in accordance with the method identified in ASTM D 412 at room temperature, (23 C 5 C

    30、) shall be a minimum of the following values:6.2.1.1 Minimum tensile strength of 10 MPa (1500 psi).6.2.1.2 Minimum elongation of 150%.An accelerated aging test involving heat aging for 168 hours at 110 C shall be conducted in accordance with SAE J1128.6.2.2 ApplicationInsulation shall be homogeneous

    31、 and shall be placed concentrically within commercial tolerances about the conductor. Insulation shall adhere closely to, but strip readily from the conductor leaving it reasonably clean and in suitable conditionfor termination.6.2.3 Insulated Conductor Outside DiameterThe outside diameter of each i

    32、nsulated conductor shall be measured in accordance with SAE J1128. The mean of the diameter readings shall determine the finished insulated conductor diameter and shall be no greater than the maximum values shown in Table 2.6.2.4 Wall ThicknessThe minimum wall thickness shall be measured using the m

    33、ethod outlined in SAE J1128. All individual wall thickness values must be in accordance with those listed in Table 2.SAE INTERNATIONAL J1067 OCT2016 Page 5 of 96.2.5 Dielectric Voltage Withstand TestThis test is only practical for use by manufacturers of the wire or cable. Refer to 6.2.6 for an alte

    34、rnate test for use by those wishing to test cable before installation or use in harness assemblies. Unless otherwise specified, all specimens shall be the entire length of wire conductors subjected to continuous spark testing with voltage set at 1500 volts, AC.6.2.5.1 Apparatus6.2.5.1.1 Spark Tester

    35、A transformer of sufficient capacity to maintain the test voltage specified in the detailed specification under all normal conditions of leakage current shall be used. The core of the transformer and one end of the secondary winding shall be connected to ground. A voltmeter shall be so located in th

    36、e circuit that it will indicate at all times the actual test voltage applied. The spark tester shall not be simultaneously connected to more than one electrode.6.2.5.1.2 ElectrodeAn electrode which makes direct mechanical contact with the surface of the insulation of the wire or cable undergoing tes

    37、t shall be used. A pipe, coiled spring or the like shall not be acceptable. If the link bead-chain type of electrode is used, the bottom of the metal electrode enclosure shall be “V”-shaped. The chains shall have a length appreciably greater that the depth of the enclosure. The width of the trough s

    38、hall be approximately 38 mm (1.5 inch) greater than the diameter of the largest wire or cable to be tested. If a bead-chain type of electrode is used, the beads shall have a diameter of 5 mm(3/16 inch). The longitudinal spacing of the chains shall not be more than 13 mm (1/2 inch). The transverse sp

    39、acing of the chains shall not be more than 9.5 mm (3/8 inch), except that the spacing may be 13 mm (1/2 inch) if the transverse rows of chain are staggered. The electrode shall be provided with a grounded metallic screen or the equivalent as a guard against contact by personnel. The length of the el

    40、ectrode shall be sufficient to meet the requirements in 6.2.5.2.6.2.5.1.3 Fault Signaling DeviceA fault signaling device or system shall include a visible signal, a defect recording device, and/or an automatic stop device. The arrangement shall operate in such a way that when the fault signal is giv

    41、en, it will be maintained until manually reset.6.2.5.2 ProcedureThe spark test shall be conducted as near to the end of the manufacturing process as is practicable. The test voltage shall be as specified in the detailed specification. The specimen shall be attached to the electrode and the electrode

    42、 connected to one lead of the transformer secondary. Both ends of the conductor of the specimen, the other secondary lead and the transformer core shall be grounded. A direct connection shall be made between the ground of the conductor at the take-up end of the transformer secondary ground. The volt

    43、meter located in the circuit shall indicate the test potential at all times during the test. The speed of the specimen through the electrode shall be adjusted so that contact between the electrode and any point on the insulation of the specimen will be maintained for at least 0.15 seconds. This rate

    44、 limits the speed of the specimen travel to a maximum of 10 m (33 feet) per min per 25 mm (1 inch) of electrode length. Unless otherwise specified in the detailed specification, the entire delivery of the wire shall be tested.6.2.6 Alternate Dielectric TestThis test is an alternative to the dielectr

    45、ic voltage withstand test of 6.2.5, for users of cable who wish to perform such a test prior to installation or use in harness assemblies. A 25 mm (1 inch) length of insulation shall be removed from each end of a 600 mm (24 inch) sample of each size of finished insulated conductor and the two ends t

    46、wisted together. The loop thus formed shall be immersed in water containing 5% salt by weight at room temperature so that not more than 150 mm (6 inch)of each end of the sample protrudes above the solution. After being immersed for 5 h and while still immersed, the sample shall withstand the applica

    47、tion of 1000 V rms at 50 to 60 Hz between the conductor and the solution for 1 min without failure of the insulation.SAE INTERNATIONAL J1067 OCT2016 Page 6 of 96.2.7 Cold Bend TestUsing a specimen of each of the insulated conductor sizes employed in the cable and a mandrel size as identified in Tabl

    48、e 2, condition and test the specimen at 40 C according to the method outlined in SAE J1128. A visual inspection shall reveal no cracks or splits. The sample is to be returned to room temperature and then subjected to the dielectric test specified in 6.2.5 or 6.2.6.6.2.8 Deformation (Pinch) TestInsul

    49、ated conductors shall pass the pinch test outlined in SAE J1128. Note that while this test does not specify elevated temperature in the way that a UL deformation test would, the heat aging requirement contained in the above physical properties section is considered fully adequate for the application.6.2.9 Abrasion ResistanceThe cable jacket shall be subjected to the sandpaper abrasion resistance test outlined in SAE J


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