ASTM D2477-2007 Standard Test Method for Dielectric Breakdown Voltage and Dielectric Strength of Insulating Gases at Commercial Power Frequencies《商业电源频率下绝缘气体介电击穿电压和介电强度的标准试验方法》.pdf
《ASTM D2477-2007 Standard Test Method for Dielectric Breakdown Voltage and Dielectric Strength of Insulating Gases at Commercial Power Frequencies《商业电源频率下绝缘气体介电击穿电压和介电强度的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D2477-2007 Standard Test Method for Dielectric Breakdown Voltage and Dielectric Strength of Insulating Gases at Commercial Power Frequencies《商业电源频率下绝缘气体介电击穿电压和介电强度的标准试验方法》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 2477 07Standard Test Method forDielectric Breakdown Voltage and Dielectric Strength ofInsulating Gases at Commercial Power Frequencies1This standard is issued under the fixed designation D 2477; the number immediately following the designation indicates the year oforiginal adoption or
2、, in the case of revision, the year of last revision. 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 test method covers the determination of the dielec-tric breakdown voltage
3、 and dielectric strength of insulatinggases used in transformers, circuit breakers, cables, and similarapparatus as an insulating medium. The test method is appli-cable only to gases with boiling points below room temperatureat atmospheric pressure.1.2 This standard may involve hazardous materials,
4、opera-tions, and equipment. This standard does not purport toaddress all of the safety concerns, if any, associated with itsuse. It is the responsibility of the user of this standard toestablish appropriate safety and health practices and deter-mine the applicability of regulatory limitations prior
5、to use.1.3 Mercury has been designated by EPA and many stateagencies as a hazardous material that can cause centralnervous system, kidney and liver damage. Mercury, or itsvapor, may be hazardous to health and corrosive to materials.Caution should be taken when handling mercury and mercurycontaining
6、products. See the applicable product MaterialSafety Data Sheet (MSDS) for details and EPAs website http:/www.epa.gov/mercury/faq.htm for additional informa-tion. Users should be aware that selling mercury and/ormercury containing products into your state may be prohibitedby state law.2. Referenced D
7、ocuments2.1 ASTM Standards:2D 2864 Terminology Relating to Electrical Insulating Liq-uids and Gases2.2 IEEE Standard:3No. 4 Standard Techniques for High Voltage Testing2.3 ASTM Adjuncts:Dielectric cell assembly and detail (2 drawings)43. Terminology3.1 Definitions: For definitions of terms used in t
8、his testmethod, refer to Terminology D 2864.4. Significance and Use4.1 The dielectric breakdown voltage and dielectric strengthof an insulating gas in a uniform field depends primarily on themolecular structure of the gas. As different gases are mixedeither by plan or by contamination, any change in
9、 dielectricbreakdown voltage and dielectric strength will depend on boththe nature and proportion of the individual gases. This testmethod uses plane and spherical electrodes which provide anearly uniform field (see Appendix) in the area of electricaldischarge. It is suitable for determining the die
10、lectric break-down voltage and dielectric strength of different gases andmixtures thereof for research and application evaluations andalso as a field test. A more complete discussion of thesignificance of the dielectric strength test is given in theAppendix.5. Apparatus5.1 Electrical Apparatus:5.1.1
11、 TransformerThe desired test voltage may be mostreadily obtained by a step-up transformer energized from avariable low-voltage commercial power frequency source. Thetransformer and controlling element shall be of such size anddesign that, with the test specimen in the circuit, the crest factor(ratio
12、 of maximum to mean effective) of the 60-Hz test voltagedoes not differ by more than 65 % from that of a sinusoidalwave over the upper half of the range of test voltage. The crestfactor may be checked by means of an oscilloscope, a spheregap, or a peak-reading voltmeter in conjunction with an rmsvol
13、tmeter. Where the waveform cannot be determined conve-niently, a transformer having a rating of not less than12 kVAat the usual breakdown voltage shall be used. Transformers oflarger kVA capacity may be used, but in no case should thepower frequency short circuit current in the specimen circuit beou
14、tside the range of 1 to 10 mA/kV of applied voltage. This1This test method is under the jurisdiction of ASTM Committee D27 onElectrical Insulating Liquids and Gases and is the direct responsibility of Subcom-mittee D27.05 on Electrical Test.Current edition approved Oct. 1, 2007. Published October 20
15、07. Originallyapproved in 1966. Last previous edition approved in 2002 as D 2477 02e1.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary
16、 page onthe ASTM website.3Available from The Institute of Electrical and Electronic Engineers, Inc.(IEEE), 445 Hoes Ln., P.O. Box 1331, Piscataway, NJ 08854-1331.4Detailed drawings of this apparatus are available at a nominal cost from:ASTMInternational Headquarters. Order Adjunct No. ADJD2477.1Copy
17、right ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.limitation of current may be accomplished by using a suitableexternal series resistor or by employing a transformer withsufficient inherent reactance.5.1.2 Circuit-Interrupting EquipmentThe
18、test transformerprimary circuit shall be protected by an automatic circuit-breaking device capable of opening (as nearly instantaneouslyas possible) on the current produced by the breakdown of thetest specimen; a circuit breaker that opens within 5 cycles maybe used if the short-circuit current as d
19、escribed in 5.1.1 doesnot exceed 200 mA. A prolonged flow of current at the time ofbreakdown causes contamination of the gases and damage ofthe electrodes, thereby affecting the subsequent test results, andincreasing the electrode and test cell maintenance and time oftesting.5.1.3 Voltage-Control Eq
20、uipmentThe rate of voltage riseshall be12 kV/s 6 20 %. Voltage control may be secured by amotor-driven variable-ratio-autotransformer. Preference isgiven to equipment having an approximately straight-linevoltage-time curve over the desired operating range. Motordrive is preferred to manual drive bec
21、ause of the ease ofmaintaining a reasonably uniform rate-of-voltage rise with thistest method. The rate-of-voltage rise may be calculated frommeasurements of the time required to raise the voltage betweentwo prescribed values. When motor-driven equipment is used,calibrate the speed control rheostat
22、in terms of rate-of-voltagerise for the test transformer used.5.1.4 VoltmeterMeasure the voltage by a method thatfulfills the requirements of IEEE Standard No. 4, giving crestand also (if available) rms values, preferably by means of:5.1.4.1 Avoltmeter connected to the secondary of a separatepotenti
23、al transformer, or5.1.4.2 A voltmeter connected to a well-designed tertiarycoil in the test transformer, or5.1.4.3 A voltmeter connected to the low-voltage side of thetest transformer.5.1.5 AccuracyThe combined accuracy of the voltmeterand voltage divider circuit is not to exceed 5 % at the rate ofv
24、oltage rise specified in 5.1.3.5.2 Evacuation and Filling Apparatus:5.2.1 Vacuum PumpThe vacuum pump shall have suffi-cient pumping capacity to be able to evacuate the test cell to apressure below 0.133 kPa (1 torr).5.2.2 Vacuum and Pressure GageEither a mercury ma-nometer, or one or more gages, cap
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