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    UL 83A-2016 UL Standard for Safety Flouropolymer Insulated Wire (First Edition).pdf

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    UL 83A-2016 UL Standard for Safety Flouropolymer Insulated Wire (First Edition).pdf

    1、UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL UL 83A Flouropolymer Insulated Wire STANDARD FOR SAFETYUL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM ULUL COPYRIGHTED MATERIAL NOT AUTH

    2、ORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL UL Standard for Safety for Flouropolymer Insulated Wire, UL 83A First Edition, Dated February 1, 2016 Summary of Topics This is the First Edition of ANSI/UL 83A. The new requirements are substantially in accordance with Propo

    3、sal(s) on this subject dated November 20, 2015. All rights reserved. No part of this publication may be reproduced, stored in a retrieval system, or transmitted in any form by any means, electronic, mechanical photocopying, recording, or otherwise without prior permission of UL. UL provides this Sta

    4、ndard as is without warranty of any kind, either expressed or implied, including but not limited to, the implied warranties of merchantability or tness for any purpose. In no event will UL be liable for any special, incidental, consequential, indirect or similar damages, including loss of prots, los

    5、t savings, loss of data, or any other damages arising out of the use of or the inability to use this Standard, even if UL or an authorized UL representative has been advised of the possibility of such damage. In no event shall ULs liability for any damage ever exceed the price paid for this Standard

    6、, regardless of the form of the claim. Users of the electronic versions of ULs Standards for Safety agree to defend, indemnify, and hold UL harmless from and against any loss, expense, liability, damage, claim, or judgment (including reasonable attorneys fees) resulting from any error or deviation i

    7、ntroduced while purchaser is storing an electronic Standard on the purchasers computer system. FEBRUARY 1, 2016 UL 83A tr1UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL FEBRUARY 1, 2016 UL 83A tr2 No Text on This PageUL COPYRIGHTED MATERIAL

    8、 NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL FEBRUARY 1, 2016 1 UL 83A Standard for Flouropolymer Insulated Wire First Edition February 1, 2016 This ANSI/UL Standard for Safety consists of the First Edition. The most recent designation of ANSI/UL 83A as an Amer

    9、ican National Standard (ANSI) occurred on February 1, 2016. ANSI approval for a standard does not include the Cover Page, Transmittal Pages and Title Page. Comments or proposals for revisions on any part of the Standard may be submitted to UL at any time. Proposals should be submitted via a Proposal

    10、 Request in ULs On-Line Collaborative Standards Development System (CSDS) at http:/. ULs Standards for Safety are copyrighted by UL. Neither a printed nor electronic copy of a Standard should be altered in any way. All of ULs Standards and all copyrights, ownerships, and rights regarding those Stand

    11、ards shall remain the sole and exclusive property of UL. COPYRIGHT 2016 UNDERWRITERS LABORATORIES INC. ANSI/UL 83A-2016UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL FEBRUARY 1, 2016 FLOUROPOLYMER INSULATED WIRE - UL 83A 2 No Text on This P

    12、ageUL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL CONTENTS 1 Scope .4 2 General .4 2.1 Units of measure .4 2.2 Reference publications 4 2.3 Summary of requirements .5 3 Denitions .5 4 Construction 6 4.1 Conductors 6 4.2 Insulation 9 4.3 Ass

    13、emblies that include thermoplastic-insulated single conductors .11 4.4 Braids 11 5 Test requirements 11 5.1 General 11 5.2 Conductor resistance 11 5.3 Short-term insulation resistance at elevated temperature in water .12 5.4 Long-term insulation resistance in water 12 5.5 Capacitance and relative pe

    14、rmittivity of wet rated ( W type) wires 12 5.6 Flexibility at room temperature after aging 13 5.7 Cold bend and cold impact .13 5.8 Deformation 13 5.9 Flame and smoke .14 5.10 Weather resistance (optional) 17 5.11 Oil resistance (optional) .17 5.12 Gasoline and oil resistance (optional) .17 5.13 Dur

    15、ability of ink printing .18 5.14 Color coating 18 5.15 Long-term aging of insulation 18 5.16 A-C spark test .18 5.17 Dielectric voltage-withstand in water 19 5.18 Insulation resistance in water at 15C .19 5.19 Electrical continuity .19 6 Marking .19 6.1 Marking on product 19 6.2 Marking on package .

    16、22 6.3 Month and year of manufacture .22 TABLES .22 APPENDIX A (Informative) Summary of Requirements APPENDIX B (Informative) Metric Sizes APPENDIX C (Informative) Evaluation of Materials Having Characteristics Differing from Those in Table 12 FEBRUARY 1, 2016 FLOUROPOLYMER INSULATED WIRE - UL 83A 3

    17、UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL 1 Scope 1.1 This Standard species the requirements for 600 V, single-conductor, ouropolymer-insulated wires and cables in accordance with NFPA 70, National Electrical Code (NEC). Note: See Appe

    18、ndix A for the complete list of wire types covered by this Standard. 1.2 Products for which this Standard provides requirements might have applications not described in the electrical code listed in 1.1. 2 General 2.1 Units of measure 2.1.1 Values stated without parentheses are the requirement. Valu

    19、es in parentheses are explanatory or approximate information. 2.2 Reference publications 2.2.1 Any undated reference to a code or standard appearing in the requirements of this standard shall be interpreted as referring to the latest edition of that code or standard. UL Standards UL 1685 Vertical-Tr

    20、ay Fire-Propagation and Smoke-Release Test for Electrical and Optical-Fiber Cables UL 2556 Wire and Cable Test Methods ASTM (American Society for Testing and Materials) Standards B3-13, Standard Specication for Soft or Annealed Copper Wire B8-11, Standard Specication for Concentric-Lay-Stranded Copp

    21、er Conductors, Hard, Medium-Hard, or Soft B33-10(2014), Standard Specication for Tinned Soft or Annealed Copper Wire for Electrical Purposes B160-10(2014), Standard Specication for Nickel Rod and Bar B172-10(2015), Standard Specication for Rope-Lay-Stranded Copper Conductors Having Bunch-Stranded Me

    22、mbers, for Electrical Conductors B173-10(2015), Standard Specication for Rope-Lay-Stranded Copper Conductors Having Concentric-Stranded Members, for Electrical Conductors FEBRUARY 1, 2016 FLOUROPOLYMER INSULATED WIRE - UL 83A 4UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRI

    23、BUTION WITHOUT PERMISSION FROM UL B174-10(2015), Standard Specication for Bunch-Stranded Copper Conductors for Electrical Conductors B355-11, Standard Specication for Nickel-Coated Soft or Annealed Copper Wire IEC (International Electrotechnical Commission) Standards 60228 (2004-11), Conductors of i

    24、nsulated cables NFPA (National Fire Protection Association) Publication NFPA 70, National Electrical Code (NEC) 2.3 Summary of requirements 2.3.1 As a guide to users of this Standard, a summary of requirements is provided in Appendix A. 3 Denitions 3.1 The following denitions apply in this Standard:

    25、 3.2 EQUIPMENT-GROUNDING CONDUCTOR a conductor that is dened in the NEC, as Grounding Conductor, Equipment”. 3.3 ETFE Ethylene tetrauoroethylene 3.4 FEP Fluorinated ethylene propylene 3.5 PFA Peruoroalkoxy 3.6 TFE Polytetrauoroethylene 3.7 THERMOPLASTIC a polymeric material that can repeatedly be so

    26、ftened by heating and hardened by cooling and that in the softened state can be shaped through the application of force. FEBRUARY 1, 2016 FLOUROPOLYMER INSULATED WIRE - UL 83A 5UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL 4 Construction 4

    27、.1 Conductors 4.1.1 General 4.1.1.1 Circuit and equipment-grounding conductors shall be of copper or of a nickel-based alloy. 4.1.2 Copper conductors 4.1.2.1 General 4.1.2.1.1 The requirements of 4.1.2.2 or 4.1.2.3 shall apply to solid conductors or the individual wires of stranded conductors prior

    28、to stranding. 4.1.2.2 Bare copper conductors 4.1.2.2.1 Each wire in a bare copper conductor shall comply with the requirements of ASTM B3. 4.1.2.3 Tin-coated copper conductors 4.1.2.3.1 Each wire in a tin-coated conductor shall comply with the requirements of ASTM B33. Overcoating of 2.08 mm 2 (14 A

    29、WG), 3.31 mm 2 (12 AWG), and 5.26 mm 2 (10 AWG) stranded copper conductor with a layer of tin shall be optional. 4.1.2.4 Nickel-base alloy conductors 4.1.2.4.1 Each wire in a nickel-base alloy conductor shall comply with the requirements of ASTM B160. 4.1.2.5 Nickel-coated copper conductors 4.1.2.5.

    30、1 Each solid copper conductor and each strand in a stranded copper conductor shall be protected against oxidation by a coating of nickel complying with ASTM B355 4.1.3 Sizes and stranding 4.1.3.1 Sizes 4.1.3.1.1 Conductors shall be as shown in Table 1. Note: IEC conductor sizes are not recognized in

    31、 the NEC, however, these sizes can be required for wires and cables intended for use outside of the codes. As a guide to users of this Standard, information on IEC conductors is provided in Appendix B. FEBRUARY 1, 2016 FLOUROPOLYMER INSULATED WIRE - UL 83A 6UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR

    32、 FURTHER REPRODUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL 4.1.3.2 Stranding 4.1.3.2.1 General 4.1.3.2.1.1 The minimum number of wires (strands) in a conductor shall be in accordance with Table 2. 4.1.3.2.1.2 Copper strands smaller than 0.0127 mm 2 (36 AWG) shall not be used. 4.1.3.2.2 Compres

    33、sed 4.1.3.2.2.1 A compressed-stranded conductor shall be a round conductor consisting of a central core surrounded by one or more layers of helically laid wires with either the direction of lay reversed in successive layers or unilay or unidirectional lay. The direction of lay of the outer layer sha

    34、ll be left-hand in all cases. The strands of one or more layers shall be slightly compressed by rolling, drawing, or other means to change the originally round strands to various shapes that achieve lling of some of the spaces originally present between the strands. 4.1.3.2.3 Assembly of strands 4.1

    35、.3.2.3.1 A 19-wire combination round-wire unilay stranded conductor shall be round and shall consist of a straight central wire, an inner layer of six wires of the same diameter as the central wire, and an outer layer consisting of six wires with the same diameter as the central wire alternated with

    36、 six wires with a diameter of 0.732 times the diameter of the central wire. No particular assembly of the individual wires of any other stranded conductor shall be required. However, simple bunching (untwisted strands) shall not be used. The length of lay of the strands in a bunch-stranded conductor

    37、 twisted as a single bunch shall not be greater than as indicated in Table 3. The direction of lay of the strands in a bunch-stranded conductor shall be left-hand. 4.1.3.2.4 Length and direction of lay 4.1.3.2.4.1 Every stranded conductor other than a bunch-stranded conductor twisted as a single bun

    38、ch shall comply with the following: a) The direction of lay of the strands, members, or ropes in a 13.3 107 mm 2 (6 AWG 4/0) conductor, other than a combination unilay or a compressed unilay or compressed unidirectional lay conductor, shall be reversed in successive layers. Rope-lay conductors with

    39、bunch-stranded or concentric-stranded members shall be either unidirectional or reversed. All unidirectional lays and the outer layer of reversed lays shall be in the left-hand direction. b) For a bunch-stranded member of a rope-lay-stranded conductor in which the members are formed into rope-strand

    40、ed components that are then cabled into the nal conductor, the length of lay of the individual members within each component shall not be more than 30 times the outside diameter of one of those members. c) For a concentric-stranded member of a rope-lay-stranded conductor, the length of lay of the in

    41、dividual strands in a member shall be81 6times the outside diameter of the member. The direction of lay of the strands in each member shall be reversed in successive layers of the member. FEBRUARY 1, 2016 FLOUROPOLYMER INSULATED WIRE - UL 83A 7UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRO

    42、DUCTION OR DISTRIBUTION WITHOUT PERMISSION FROM UL d) The length of lay of the strands in both layers of a 19-wire combination round-wire unilay- stranded copper conductor shall be81 6times the outside diameter of the completed conductor. Otherwise, the length of lay of the strands in every layer of

    43、 a concentric-lay-stranded conductor consisting of fewer than 37 strands shall be81 6times the outside diameter of the conductor. e) The length of lay of the strands in the outer two layers of a concentric-lay-stranded conductor consisting of 37 or more strands shall be81 6times the outside diameter

    44、 of the conductor. f) The length of lay of the members or ropes in the outer layer of a rope-lay-stranded conductor shall be81 6times the outside diameter of that layer. 4.1.4 Diameter and cross-sectional area 4.1.4.1 The nominal diameters of solid and stranded conductors are shown in Tables47.Themi

    45、nimum diameter for stranded conductors is 98 percent of the nominal. The maximum diameter is 101 percent of the nominal. The diameter shall be determined in accordance with the test, Conductor diameter, in UL 2556. 4.1.4.2 Conductor sizes in mm 2 (AWG/kcmil) covered by this Standard are shown in Tab

    46、le 4. The nominal cross-sectional area of a conductor identied in Table 4 is not a requirement. 4.1.4.3 The nominal cross-sectional area, if required, shall be determined in accordance with the test, Cross-sectional area, in UL 2556. 4.1.4.4 Compressed unilay or compressed unidirectional lay copper

    47、conductors that are smaller in diameter than the requirement (0.98 x nominal in Table 5) for compressed concentric lay conductors shall be marked in accordance with 6.1.6. 4.1.5 Joints 4.1.5.1 A joint in a solid conductor or in one of the individual wires of a stranded conductor shall neither increa

    48、se the diameter nor materially decrease the strength of the conductor or the individual wire. Not more than one of the wires in a stranded conductor of 19 wires or less, nor more than one of the wires in any given layer in a stranded conductor of more than 19 wires, shall be joined in any 0.3 m (1 f

    49、t) of conductor. 4.1.5.2 In a rope-lay-stranded conductor, which consists of a central core surrounded by one or more layers of stranded members (primary groups), each member shall be considered equivalent to a solid wire, and as such, shall be spliced as a unit. These joints shall not be any closer together than 2 lay lengths. 4.1.5.3 A joint shall be allowed in a Class B stranded 2.08 mm 2 (14 AWG), 3.31 mm 2 (12 AWG), or 5.26 mm 2 (10 AWG) insulated copper conductor intended to be used in a


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