K11 裸电线 标准查询与下载



共找到 503 条与 裸电线 相关的标准,共 34

이 표준은 주로 전기 기기의 권선에 사용하는 평각 동선 및 2중 면권 평각 동선에 대하여 규정한다.

Rectangular copper wires for electrical purpose and double cotton covered rectangular copper wires

ICS
29.060.10
CCS
K11
发布
2014-06-15
实施
2014-06-15

JB/T 11868.1的本部分规定了硬态铜包钢线的分类、型号、技术要求、交货要求、试验方法等。本部分适用于电气、电力、电子及通信等领域用硬态铜包钢线。

Copper-clad steel wire for electrical purposes.Part 1: Hard-drawn copper-clad steel wire

ICS
29.060.10
CCS
K11
发布
2014-05-06
实施
2014-10-01

本标准规定了光纤复合架空地线的术语和定义、型号、规格、产品标记、结构、交货长度、技术要求、试验方法、检验规则、包装、运输和贮存、安装要求、使用说明书。 本标准适用于光纤复合架空地线(以下简称OPGW)。

Optical fiber composite overhead ground wires

ICS
29.060.10
CCS
K11
发布
2014-05-06
实施
2014-10-01

本标准规定了屏蔽用铜包铝合金线的产品分类、技术要求、试验方法、检验规则、包装、贮存及标志。本标准主要适用于电线电缆屏蔽用铜包铝合金线。通信电缆导体用铜包铝合金线也可参照本标准。

Copper-clad aluminium alloy wires for shield

ICS
29.060.10
CCS
K11
发布
2014-05-06
实施
2014-10-01

JB/T 11868的本部分规定了软态铜包钢线的分类、型号、技术要求、交货要求、试验方法等。本部分适用于电气、电力、电子及通信等领域用软态铜包钢线。

Copper-clad steel wire for electrical purposes.Part 2: Annealed copper-clad steel wire

ICS
29.060.10
CCS
K11
发布
2014-05-06
实施
2014-10-01

本标准规定了屏蔽用铜包铝合金线的产品分类、技术要求、试验方法、检验规则、包装、存储及标志。本标准主要适用于电线电缆屏蔽用铜包铝合金线。此外,通信电缆导体用铜包铝合金线也可参照本标准。

Copper-clad aluminium alloy wires for shield

ICS
29.060.10
CCS
K11
发布
2013-11-28
实施
2014-04-01

Superconductivity. Matrix to superconductor volume ratio measurement. Copper to superconductor volume ratio of Cu/Nb-Ti composite superconducting wires

ICS
29.050
CCS
K11
发布
2013-09-30
实施
2013-09-30

Aerospace. Wire, aluminium alloy and copper-clad aluminium conductors. General performance requirements

ICS
49.060
CCS
K11
发布
2013-04-30
实施
2013-04-30

Notified aluminum busbar for electricians

ICS
CCS
K11
发布
2013-03-01
实施
2013-03-01

Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites (IEC 61788-13:2012); German version EN 61788-13:2012

ICS
29.050
CCS
K11
发布
2013-02
实施
2013-02-01

Superconductivity -- AC loss measurements -- Total AC loss measurement of round superconducting wires exposed to a transverse alternating magnetic field at liquid helium temperature by a pickup coil method

ICS
17.220
CCS
K11
发布
2013-01-21
实施
2013-01-21

Superconductivity -- Superconducting power devices -- General requirements for characteristic tests of current leads designed for powering superconducting devices

ICS
29.050
CCS
K11
发布
2013-01-21
实施
2013-01-21

1.1 This specification covers concentric-lay-stranded self-damping aluminum conductor, steel-reinforced (ACSR/SD), and its component wires for use as overhead electrical conductors (Explanatory Notes 1 and 2). 1.2 The values stated in inch-pound or SI units are to be regarded separately as standard. Each system shall be used independently of the other. Combining values from the two systems may result in non-conformance with the specification. For conductor sizes designated by AWG or kcmil, the requirements in SI units have been numerically converted from corresponding values stated or derived in inch-pound units. For conductor sizes designated by SI units only, the requirements are stated or derived in SI units. 1.2.1 For density, resistivity, and temperature, the values stated in SI units are to be regarded as standard.Note 1—ACSR/SD is designed to control aeolian vibration by integral damping. The conductors consist of a central core of a round steel wire or wires surrounded by two layers of trapezoidal aluminum 1350-H19 wires or two layers of trapezoidal aluminum 1350-H19 wires and one layer of round aluminum 1350-H19 wires (Fig. 1). The trapezoidal-wire layers are separated from each other and from the steel core by two small annular gaps that provide the conductors self-damping characteristics. The round aluminum wires are in tight layer contact between themselves and the underlying trapezoidal wire layer. Different strandings of the same size of conductor are identified by type, which is the approximate ratio of steel area to aluminum area, expressed in percent (Table 1 and Table 2).Note 2—The aluminum and temper designations conform to ANSI Standard H8201;35.1. Aluminum 1350 corresponds to UNS A91350 in accordance with Practice E527. 1.3 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Standard Specification for Concentric-Lay-Stranded Self-Damping Aluminum Conductors, Steel Reinforced (ACSR/SD)

ICS
29.240.20 (Power transmission and distribution lin
CCS
K11
发布
2013
实施

3.1 This test method is designed as an inspection or acceptance test of new bare soft square and rectangular wire intended for subsequent fabrication into magnet wire.Note 1—Since the applied unit stress and the time of application are constant for all wire sizes, the test enables comparisons of stiffness to be made between wires of the same or different size on the basis of the permanent elongation resulting from the application of a low unit stress. 1.1 This test method, known as the low-stress elongation (LSE) test, covers the procedure for determining the stiffness of bare soft square and rectangular copper and aluminum wire in terms of the permanent elongation resulting from the application of a tensile stress. 1.2 The SI values for the mass of the specimen are regarded as the standard. For all other properties, the inch-pound values are to be regarded as standard and the SI units may be approximate.

Standard Test Method for Stiffness of Bare Soft Square and Rectangular Copper and Aluminum Wire for Magnet Wire Fabrication

ICS
29.060.10 (Wires)
CCS
K11
发布
2013
实施

1.1 This specification covers round wire concentric-lay-stranded aluminum conductors, steel supported (ACSS) for use as overhead electrical conductors (see Explanatory Note 1). 1.2 The values stated in inch-pound or SI units are to be regarded separately as standard. Each system shall be used independently of the other. Combining values from the two systems may result in nonconformance with the specification. For conductor sizes designated by AWG or kcmil sizes, the requirements in SI units are numerically converted from the corresponding requirements in inch-pound units. For conductor sizes designation by AWG or kcmil, the requirements in SI units have been numerically converted from corresponding values stated or derived in inch-pound units. For conductor sizes designated by SI units only, the requirements are stated or derived in SI units. 1.2.1 For density, resistivity and temperature, the values stated in SI units are to be regarded as standard.

Standard Specification for Concentric-Lay-Stranded Aluminum Conductors, Coated Steel Supported (ACSS)

ICS
29.060.10 (Wires)
CCS
K11
发布
2013
实施

1.1 This specification covers bare bunch-stranded and rope-lay bunch-stranded conductors made from round copper wires finer than No. 40 AWG with diameters less than 0.0031 in. (.078 mm), either coated or uncoated with tin or silver, for use as electrical conductors. (Explanatory Note 1). 1.2 The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard. 1.2.1 Exceptions—The SI values for density and temperature are to be regarded as standard.

Standard Specification for Fine-Wire Bunch-Stranded and Rope-Lay Bunch-Stranded Copper Conductors for Use as Electrical Conductors

ICS
29.050 (Superconductivity and conducting materials
CCS
K11
发布
2013
实施

1.1 This specification covers concentric-lay-stranded conductors made from round aluminum 1350-H19 (extra hard) aluminum wires and round aluminum-clad steel core wires for use as overhead electrical conductors (Explanatory Note 1 and Note 2). 1.2 The SI values of density and resistivity are to be regarded as standard. For all other properties the inch-pound units are regarded as standard and the SI units may be approximate.

Standard Specification for Concentric-Lay-Stranded Aluminum Conductors, Aluminum-Clad Steel Reinforced for Use in Overhead Electrical Conductors

ICS
29.240.20 (Power transmission and distribution lin
CCS
K11
发布
2013
实施

1.1 This specification covers bare compact round concentric-lay-stranded conductors made from uncoated round copper wires for general use for electrical purposes. These conductors shall be constructed with a central core surrounded by 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 be regarded separately as standard. The values in each system are not exact equivalents; therefore, each system shall be used independently of the other. Combining values from the two systems may result in nonconformance with the specification. 1.2.1 For density, resistivity, and temperature, the values stated in SI units are to be regarded as standard.

Standard Specification for Compact Round Concentric-Lay-Stranded Copper Conductors

ICS
29.240.20 (Power transmission and distribution lin
CCS
K11
发布
2013
实施

Guide for construction and acceptance of carbon fibre complex core aluminium stranded wire

ICS
CCS
K11
发布
2012-12-01
实施
2012-12-01

This part of IEC 61788 describes considerations for the measurement of hysteretic loss in Cu/Nb-Ti multifilamentary composites using DC- or low-ramp-rate magnetometry. This international standard specifies a method of the measurement of hysteretic loss in multifilamentary Cu/Nb-Ti composite conductors. Measurements are assumed to be on round wires with temperatures at or near 4@2 K. DC or low-ramp-rate magnetometry will be performed using either a superconducting quantum interference device (SQUID magnetometer@ See Annex A.) or a vibrating-sample magnetometer (VSM). In case differences between the calibrated magnetometer results are noted@ the VSM results@ extrapolated to zero ramp rate@ will be taken as definitive. Extension to the measurement of superconductors in general is given in Annex B.

Superconductivty - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites

ICS
17.220;29.050
CCS
K11
发布
2012-07
实施
2012-08-03



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