ASTM B496-2004 Standard Specification for Compact Round Concentric-Lay-Stranded Copper Conductors《密实的圆形同心绞捻铜导线标准规范》.pdf
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1、Designation: B 496 04Standard Specification forCompact Round Concentric-Lay-Stranded CopperConductors1This standard is issued under the fixed designation B 496; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revis
2、ion. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This specification covers bare compact roundconcentric-lay-stranded conductors made from uncoated roundcopper wires for general
3、 use for electrical purposes. Theseconductors shall be constructed with a central core surroundedby one or more layers of helically laid compacted wires(Explanatory Note 1 and Note 2).1.2 The values stated in inch-pound or SI units are to beregarded separately as standard. The values in each system
4、arenot exact equivalents; therefore, each system shall be usedindependently of the other. Combining values from the twosystems may result in nonconformance with the specification.1.2.1 For density, resistivity, and temperature, the valuesstated in SI units are to be regarded as standard.2. Reference
5、d Documents2.1 The following documents of the issue in effect on dateof material purchase form a part of this specification to theextent referenced herein:2.2 ASTM Standards:2B 3 Specification for Soft or Annealed Copper WireB 263 Test Method for Determination of Cross-SectionalArea of Stranded Cond
6、uctorsB 354 Terminology Relating to Uninsulated Metallic Elec-trical Conductors3. Ordering Information3.1 Orders for material under this specification shall includethe following information:3.1.1 Quantity of each size (Table 1),3.1.2 Conductor size; circular-mil area or AWG, (Section 6and Table 1),3
7、.1.3 Packaging (Section 14), if required,3.1.4 Special package marking, and3.1.5 Place of inspection (Section 16).4. Joints4.1 Welds and brazes may be made in rods or in wires priorto final drawing.4.2 Welds and brazes may be made in the individual rounddrawn wires for compact conductors, but shall
8、not be closertogether than 1 ft (300 mm) for conductor of 19 wires or lessor closer than 1 ft (300 mm) in a layer for conductor of morethan 19 wires.4.3 No joint nor splice shall be made in a compact-strandedconductor as a whole.5. Lay5.1 The length of lay shall be not less than 8 nor more than16 ti
9、mes the outside diameter of the completed conductor.5.2 The direction of lay of the outer layer shall be left-hand,and it shall be reversed in successive layers, unidirectional, orunilay.6. Construction6.1 The construction of the compact round concentric-lay-stranded conductors shall be as shown in
10、Table 1.6.2 The starting round copper wires used in the fabricationof the compact round conductor shall be of such diameter as toproduce a finished conductor having a nominal cross-sectionalarea and diameter as prescribed in Table 1.7. Density7.1 For the purpose of calculating linear densities, cros
11、ssections, and so forth, the density of the copper shall be takenas 8.89 g/cm3(0.32117 lb/in.3) at 20C.8. Mass and Resistance8.1 The mass per unit length and dc electrical resistance ofa compact round conductor are greater than the total of thesecharacteristics of the compressed wires composing the
12、finishedconductor, depending upon the lay. The standard increment ofmass per unit length and electrical resistance shall be taken as2 %. The nominal mass per unit length and dc resistance are1This specification is under the jurisdiction of ASTM Committee B01 onElectrical Conductors and is the direct
13、 responsibility of Subcommittee B01.04 onConductors of Copper and Copper Alloys.Current edition approved April 1, 2004. Published April 2004. Originallyapproved in 1969. Last previous edition approved in 2001 as B 496 01.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact
14、 ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.shown in Table 1. When th
15、e dc resistance is measured at otherthan 20C, it shall be corrected by using the multiplying factorsgiven in Table 2.8.2 In cases where the lay is definitely known, the incrementmay be calculated if desired (Explanatory Note 3).8.3 For conductors to be used in covered or insulated wiresor cables, di
16、rect current (DC) resistance measurement may beused instead of the method outlined in Section 9, to determinecompliance with this specification.9. Variation in Area9.1 The cross-sectional area of the compact round conductorshall be not less than 98 % of the cross-sectional area asspecified in Column
17、 1 of Table 1.9.2 The manufacturer shall determine the cross-sectionalarea by Test Method B 263. In applying this method, theincrement in mass per unit length resulting from stranding maybe the applicable value specified in 9.1 or may be calculatedfrom the measured dimensions of the sample under tes
18、t. In caseof question regarding area compliance, the actual mass per unitlength increment due to stranding shall be calculated.10. Variation in Diameter10.1 The average diameter of the compact-round conductorshall not vary by more than +1 % and 2 % from the diameterspecified in Table 1.11. Finish11.
19、1 The conductor surface shall be smooth and free ofimperfections not consistent with the best commercial practice.12. Physical and Electrical Tests12.1 Tests for the physical and electrical properties of wirescomposing the conductors shall be made before stranding inaccordance with Specification B 3
20、 (Explanatory Note 4 andNote 5).13. Requirements for Wires13.1 Before stranding and compacting the copper wire shallmeet all of the requirements of Specification B 3.13.2 Wire shaped before stranding shall meet the require-ments of Specification B 3, except for diameter tolerance. Theelongation requ
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