ANSI IEEE 1043-1996 Recommended Practice for Voltage-Endurance Testing of Form-Wound Bars and Coils《成型模绕棒和线芯的耐压试验用推荐实施规程》.pdf
《ANSI IEEE 1043-1996 Recommended Practice for Voltage-Endurance Testing of Form-Wound Bars and Coils《成型模绕棒和线芯的耐压试验用推荐实施规程》.pdf》由会员分享,可在线阅读,更多相关《ANSI IEEE 1043-1996 Recommended Practice for Voltage-Endurance Testing of Form-Wound Bars and Coils《成型模绕棒和线芯的耐压试验用推荐实施规程》.pdf(19页珍藏版)》请在麦多课文档分享上搜索。
1、Recognized as anAmerican National Standard (ANSI)The Institute of Electrical and Electronics Engineers, Inc.3 Park Avenue, New York, NY 10016-5997, USACopyright 1997 by the Institute of Electrical and Electronics Engineers, Inc.All rights reserved. Published 1997. Printed in the United States of Ame
2、rica.IEEE is a registered trademark in the U.S. Patent +1 978 750 8400. Permission to photocopy portions of any individual standard for educationalclassroom use can also be obtained through the Copyright Clearance Center.Authorized licensed use limited to: IHS Stephanie Dejesus. Downloaded on Februa
3、ry 4, 2010 at 13:29 from IEEE Xplore. Restrictions apply. iiiIntroduction(This introduction is not part of IEEE Std 1043-1996, IEEE Recommended Practice for Voltage Endurance Testing ofForm-Wound Bars and Coils.)The voltage endurance test for full size stator bars and coils has been used by generato
4、r manufacturers andusers for almost 40 years. The first version of the recommended practice was issued in 1985. Its use over theyears showed that the recommended practice needed to be clarified, and ambiguities needed to be elimi-nated. The present version has attempted to do this. Compared to the f
5、irst version, there are no major differ-ences in the testing procedure. This recommended practice was prepared by the Dielectrics and Electrical Insulation Society (DEIS) Volt-age Endurance Technical Committee, which had the following membership:G. C. Stone,ChairThe following persons were on the bal
6、loting committee:Ray BartmikasS. CherukupalliRobert E. DraperFranklin T. EmeryMike FortGuanzhong GaoT. C. GargJames J. GrantGlenn GriffinGary GriffithBal K. GuptaAl IversenRon JohnsenChaman L. KaulLyle KlataskeWilliam M. McDermidJames McDonaldG. Harold MillerCharles MilletBeant S. NindraPhil Reppert
7、James E. TimperleyDavid TrainVicki WarrenEdward J. AdolphsonDana K. ArndtRoy L . BalkeE. A. BoulterRobert E. DraperFranklin T. EmeryNirmal K. GhaiBrian E. B.GottJames J. GrantFranklin H. GroomsBal K. GuptaChaman L. KaulLyle KlataskeSteve C. LindholmTerrence J. LorenzWillam M. McDermidG. Harold Mille
8、rOsman M. NassarBeant S. NindraWilliam B. PennRobert H. RehderCharles M. RoweGreg C. StoneJames E. TimperleyRichard F. WeddletonC. A. WilsonDaniel I. YoungAuthorized licensed use limited to: IHS Stephanie Dejesus. Downloaded on February 4, 2010 at 13:29 from IEEE Xplore. Restrictions apply. ivWhen t
9、he IEEE Standards Board approved this recommended practice on 19 September 1996, it had the fol-lowing membership:Donald C. Loughry,ChairRichard J. Holleman,Vice ChairAndrew G. Salem,Secretary*Member EmeritusAlso included are the following nonvoting IEEE Standards Board liaisons:Satish K. AggarwalAl
10、an H. CooksonChester C. TaylorRochelle L. SternIEEE Standards Project EditorGilles A. BarilClyde R. CampJoseph A. CannatelliStephen L. DiamondHarold E. EpsteinDonald C. FleckensteinJay Forster*Donald N. HeirmanBen C. JohnsonE. G. “Al” KienerJoseph L. Koepfinger*Stephen R. LambertLawrence V. McCallL.
11、 Bruce McClungMarco W. MigliaroMary Lou PadgettJohn W. PopeJose R. RamosArthur K. ReillyRonald H. ReimerGary S. RobinsonIngo RschJohn S. RyanChee Kiow TanLeonard L. TrippHoward L. WolfmanAuthorized licensed use limited to: IHS Stephanie Dejesus. Downloaded on February 4, 2010 at 13:29 from IEEE Xplo
12、re. Restrictions apply. vContentsCLAUSE PAGE1. Overview 11.1 Scope 11.2 Purpose. 12. References 23. Definitions 24. Testing equipment 24.1 Power supply 44.2 Protection . 44.3 Metering. 44.4 Temperature control. 65. Specimen preparation. 75.1 Pretest evaluation. 75.2 Electrode system 85.3 Application
13、 of heater plates . 85.4 Thermocouple application . 96. Voltage endurance testing and safety considerations 96.1 Grounding 96.2 Discharging considerations 96.3 Test areas, lights, and interlocks 96.4 Experience 106.5 Failure currents and trip circuits 106.6 High voltage test-lead connections 106.7 H
14、ealth concerns 107. Test procedures 107.1 Temperature stabilization. 107.2 Application of voltage 107.3 Failure 117.4 Suggested test records 117.5 Test parameters to be defined 128. Data analysis and consideration for interpretation. 128.1 Test data. 128.2 Analysis of data from many samples. 13ANNEX
15、A (informative) Bibliography 14Authorized licensed use limited to: IHS Stephanie Dejesus. Downloaded on February 4, 2010 at 13:29 from IEEE Xplore. Restrictions apply. 1IEEE Recommended Practice for Voltage-Endurance Testing ofForm-Wound Bars and Coils1. Overview1.1 ScopeThis recommended practice co
16、vers the voltage endurance testing of form-wound bars and coils for use inlarge rotating machine stator windings. Such testing is defined for machines with a nominal voltage rating upto 30 000 V. These tests are to be applied at 50 Hz or 60 Hz and may be done at either room temperature orelevated te
17、mperature. (Testing at 50 Hz or 60 Hz may yield different times to failure for comparable sam-ples.) The specimen to be tested should be representative of the bars or coils used in the machine, and shouldinclude the complete insulated bar and external grading construction that the machine winding wo
18、uld have.Special features different than those used in the machine should not be added to the test specimens.1.2 PurposeThe purpose of this recommended practice is to define a voltage endurance test method for use on insulated,form-wound bars and coils for installation in large rotating machine stat
19、ors. These voltage endurance testsmay be applied to representative specimens of form-wound, insulated bars and coils for either new machinesor machines to be rewound. The intent of this document is to define the specimen, the associated testingequipment, and the procedure for performing these voltag
20、e endurance tests. Specific numerical values foracceptable voltage endurance lifetimes are not recommended at this time. The voltage and temperature ofthe test, the minimum acceptable lifetime, and the number of specimens to be tested should be establishedprior to testing (see 7.5).Authorized licens
21、ed use limited to: IHS Stephanie Dejesus. Downloaded on February 4, 2010 at 13:29 from IEEE Xplore. Restrictions apply. IEEEStd 1043-1996 IEEE RECOMMENDED PRACTICE FOR VOLTAGE ENDURANCE 22. ReferencesThe following publications shall be used in conjunction with this standard. When the following stand
22、ards aresuperseded by an approved revision, the revision shall apply.ASTM D1868-93, Standard Method for Detection and Measurement of Partial Discharge (Corona) Pulses inEvaluation of Insulation Systems.1IEEE Std 4-1995, IEEE Standard Techniques for High-Voltage Testing (ANSI).2IEEE Std 43-1974 (Reaf
23、f 1991), IEEE Recommended Practice for Testing Insulation Resistance of RotatingMachinery (ANSI).IEEE P286 (D12/1-7-97), Draft Recommended Practice for Measurement of Power-Factor Tip-Up of Rotat-ing Machinery Stator Coil Insulation.3IEEE Std 930-1987 (Reaff 1995), IEEE Guide for the Statistical Ana
24、lysis of Electrical Insulation VoltageEndurance Data (ANSI).3. Definitions3.1 groundwall insulation:The main high-voltage electrical insulation that separates the copper conductorsfrom the grounded stator core in motor and generator stator windings.3.2 semiconductive slot coating:The partially condu
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