ASTM D2275-2014 Standard Test Method for Voltage Endurance of Solid Electrical Insulating Materials Subjected to Partial Discharges (Corona) on the Surface《表面经过局部放电 (电晕) 的固体电绝缘材料耐电.pdf
《ASTM D2275-2014 Standard Test Method for Voltage Endurance of Solid Electrical Insulating Materials Subjected to Partial Discharges (Corona) on the Surface《表面经过局部放电 (电晕) 的固体电绝缘材料耐电.pdf》由会员分享,可在线阅读,更多相关《ASTM D2275-2014 Standard Test Method for Voltage Endurance of Solid Electrical Insulating Materials Subjected to Partial Discharges (Corona) on the Surface《表面经过局部放电 (电晕) 的固体电绝缘材料耐电.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D2275 01 (Reapproved 2008)1D2275 14Standard Test Method forVoltage Endurance of Solid Electrical Insulating MaterialsSubjected to Partial Discharges (Corona) on the Surface1This standard is issued under the fixed designation D2275; the number immediately following the designation indica
2、tes the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1 NOTEThe units statement in subsection 1.2 was correcte
3、d and old footnote ten deleted to conform to ASTM guide-lines on sole source editorially in July 2008.1. Scope1.1 This test method differentiates among determines the voltage endurance of solid electrical insulating materials for use atcommercial power frequencies with respect to their voltage endur
4、ance under the action of corona (see Note 1). In general, this Thistest method is more meaningful for rating materials with respect to their resistance to prolonged a-cac stress under coronaconditions than is dielectric strength. for comparative evaluation between materials.NOTE 1The term “corona” i
5、s used almost exclusively in this test method instead of “partial discharge”,discharge,” because it is a visible glow at theedge of the smaller electrode. This is a difference in location,electrode interface that is the result of partial discharge. Corona, as defined in TerminologyD1711not in kind.
6、Partial discharges also occur at the edges of electrodes, and in general corona describes an electrical discharge irrespective of itslocation. , is “visible partial discharges in gases adjacent to a conductor.”1.2 The values stated in SI units are to be regarded as standard. The values given in pare
7、ntheses are mathematical conversionsto inch-pound units that are provided for information only and are not considered standard.1.3 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibilityof the user of this standard to establish
8、appropriate safety and health practices and determine the applicability of regulatorylimitations prior to use. For specific hazard statements, see Section 7.2. Referenced Documents2.1 ASTM Standards:2D149 Test Method for Dielectric Breakdown Voltage and Dielectric Strength of Solid Electrical Insula
9、ting Materials atCommercial Power FrequenciesD618 Practice for Conditioning Plastics for TestingD1711 Terminology Relating to Electrical InsulationD1868 Test Method for Detection and Measurement of Partial Discharge (Corona) Pulses in Evaluation of Insulation SystemsD5032D3382 Practice for Maintaini
10、ng Constant Relative Humidity by Means of Aqueous Glycerin SolutionsTest Methods forMeasurement of Energy and Integrated Charge Transfer Due to Partial Discharges (Corona) Using Bridge TechniquesD6054 Practice for Conditioning Electrical Insulating Materials for Testing (Withdrawn 2012)3E41 Terminol
11、ogy Relating To ConditioningE104 Practice for Maintaining Constant Relative Humidity by Means of Aqueous SolutionsE171 Practice for Conditioning and Testing Flexible Barrier Packaging2.2 Special Technical Publications:Symposium on Corona, STP 198, ASTM, 1956.19562Corona Measurement and Interpretatio
12、n,Engineering Dielectrics, Vol 1, STP 669, ASTM, 1979.197921 This test method is under the jurisdiction of ASTM Committee D09 on Electrical and Electronic Insulating Materials and is the direct responsibility of SubcommitteeD09.12 on Electrical Tests.Current edition approved May 1, 2008Nov. 1, 2014.
13、 Published July 2008December 2014. Originally approved in 1964. Last previous edition approved in 20012008 asD2275 01.D2275 01 (2008)1. DOI: 10.1520/D2275-01R08E01.10.1520/D2275-14.2 For referencedASTM standards, visit theASTM website, www.astm.org, or contactASTM Customer Service at serviceastm.org
14、. For Annual Book of ASTM Standardsvolume information, refer to the standards Document Summary page on the ASTM website.This document is not an ASTM standard and is intended only to provide the user of an ASTM standard an indication of what changes have been made to the previous version. Becauseit m
15、ay not be technically possible to adequately depict all changes accurately, ASTM recommends that users consult prior editions as appropriate. In all cases only the current versionof the standard as published by ASTM is to be considered the official document.Copyright ASTM International, 100 Barr Har
16、bor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States12.3 International Electrotechnical Commission (IEC) Documents:IEC Publication 60343 Recommended test methodsTest Methods for determiningDetermining the relative resistance ofinsulating materials to breakdown by surface discharge
17、sRelative Resistance of Insulating Materials to Breakdown by SurfaceDischarges32.4 Institute of Electrical and Electronic Engineers (IEEE) Document:IEEE SS 11205-TBR930-1987 Guide for the Statistical Analysis of Electrical Insulation Voltage Endurance Data, 1987Data43. Terminology3.1 DefinitionsFor
18、definitions of other terms used in this standard, refer to Terminology D1711 and Test Method D1868.3.2 Definitions of Terms Specific to This Standard:3.2.1 surface corona, ncorona that exists in the electrically stressed gas where electrodes are near insulation surfaces.3.2.2 threshold voltageThatth
19、at voltage below which failure will not occur under the test conditions irrespective of theduration of the test.3.2.1.1 DiscussionDemonstration of a threshold is difficult when the slope of a volt-time curve is small, and failure times are long. High frequencytests are often an aid in demonstration,
20、 by reducing the time required to reach a necessary number of voltage cycles.3.2.3 voltage endurance, nThethe time that an insulating material can withstand a prolonged alternating voltage stress underthe action of surface corona.3.2.4 voltage stress-time curve, nAa plot of the logarithm of the mean
21、 or median time to failure of a material against voltagestress (or the logarithm of voltage stress) for a particular set of test conditions.3.2.4.1 DiscussionThe plot is the quantitative depiction of the voltage stress endurance over a range of voltage stress for the conditions of test, andfor the t
22、hickness tested. The curves of a material obtained at two thicknesses are different.3.2.5 volt-time curve, nAa plot of the logarithm of the mean or median time to failure of a material against voltage (or thelogarithm of voltage) for a particular set of test conditions.3.2.5.1 DiscussionThe plot is
23、the quantitative depiction of the voltage endurance over a range of voltage for the conditions of the test, which includesthe particular thickness tested.4. Summary of Test Method4.1 In this test method, voltage sufficient to produce surface corona is applied to the nine samples from the same specim
24、en untilfailure occurs. ComparativeThe voltage endurance is the relative time to failure of two different materials of the same thicknesswhen tested with similar electrodes at the same voltage. Comparison is also possible in terms of the magnitude of voltage stress(kV/mm or kV/in.) required to produ
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