ASTM D2413-2016 Standard Practice for Preparation of Insulating Paper and Board Impregnated with a Liquid Dielectric《用液体介质浸渍的绝缘纸和纸板的制备与电试验的试验方法》.pdf
《ASTM D2413-2016 Standard Practice for Preparation of Insulating Paper and Board Impregnated with a Liquid Dielectric《用液体介质浸渍的绝缘纸和纸板的制备与电试验的试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D2413-2016 Standard Practice for Preparation of Insulating Paper and Board Impregnated with a Liquid Dielectric《用液体介质浸渍的绝缘纸和纸板的制备与电试验的试验方法》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D2413 16Standard Practice forPreparation of Insulating Paper and Board Impregnated witha Liquid Dielectric1This standard is issued under the fixed designation D2413; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the
2、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. Scope1.1 This practice covers the preparation of insulating paperand board impregnated with a liquid dielectric. Where
3、thispractice states only “paper,” the same procedure shall apply toboard.1.2 This practice has been found practicable for papershaving nominal thickness of 0.05 mm (2 mil) and above. It hasbeen used successfully for insulating board as thick as 6 mm(14 in.) when care is taken to ensure the specimen
4、geometrynecessary for valid measurement of dielectric properties. Suit-able geometry depends on the electrode system used. Rigidsolid opposing electrodes require flat specimens that haveessentially parallel surfaces.1.3 The values stated in SI units are to be regarded asstandard. No other units of m
5、easurement are included in thisstandard.2. Referenced Documents2.1 ASTM Standards:2D117 Guide for Sampling, Test Methods, and Specificationsfor Electrical Insulating Oils of Petroleum OriginD149 Test Method for Dielectric Breakdown Voltage andDielectric Strength of Solid Electrical Insulating Materi
6、alsat Commercial Power FrequenciesD150 Test Methods for AC Loss Characteristics and Permit-tivity (Dielectric Constant) of Solid Electrical InsulationD202 Test Methods for Sampling and Testing UntreatedPaper Used for Electrical InsulationD257 Test Methods for DC Resistance or Conductance ofInsulatin
7、g MaterialsD924 Test Method for Dissipation Factor (or Power Factor)and Relative Permittivity (Dielectric Constant) of Electri-cal Insulating LiquidsD1711 Terminology Relating to Electrical InsulationD1816 Test Method for Dielectric Breakdown Voltage ofInsulating Liquids Using VDE ElectrodesD1933 Sp
8、ecification for Nitrogen Gas as an Electrical Insu-lating MaterialD3394 Test Methods for Sampling and Testing ElectricalInsulating BoardD3426 Test Method for Dielectric Breakdown Voltage andDielectric Strength of Solid Electrical Insulating MaterialsUsing Impulse Waves3. Terminology3.1 DefinitionsUs
9、e Terminology D1711 for definitions ofterms used in this practice and associated with electrical orelectronic materials.4. Summary of Practice4.1 The paper is heated and vacuum dried and the liquiddielectric degassed. The paper may be dried in loose form orassembled between electrodes. The liquid di
10、electric may beheated and degassed prior to introducing it into the chambercontaining the dried paper or it may be degassed as it isintroduced into the evacuated chamber containing the driedpaper. A sufficient length of time is allowed for the impregnat-ing process depending on the apparent density
11、of the paper andmethod of impregnation. The impregnated specimens aresubsequently tested for various selected electrical properties.5. Significance and Use5.1 Dissipation Factor and Relative PermittivityKnowledge of these properties is important in the design ofelectrical equipment such as cables, t
12、ransformers, insulators,and so forth. The numerical product of these two properties ofa dielectric system is proportional to the energy loss convertedto heat, and is called its loss index (see Terminology D1711).The energy loss reduces the efficiency of electrical equipment.The heat produced tends t
13、o chemically degrade the dielectricmaterial and may even lead to thermal runaway. Test results ofimpregnated specimens can disclose significant differencesbetween combinations of papers and oils that appear similarwhen the papers and the oils are tested separately. Dissipation1This practice is under
14、 the jurisdiction of ASTM Committee D09 on Electricaland Electronic Insulating Materials and is the direct responsibility of SubcommitteeD09.01 on Electrical Insulating Products.Current edition approved Nov. 1, 2016. Published November 2016. Originallyapproved in 1965. Last previous edition approved
15、 in 2009 as D2413 99 (2009).DOI: 10.1520/D2413-16.2For 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 page onthe ASTM website.Copyright A
16、STM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1factor, particularly at elevated temperatures, is often changedsignificantly by the presence of a small quantity of impuritiesin either the liquid or the paper. This practice is useful in thecompar
17、ison of materials and in evaluating the effects ofdifferent papers on a given liquid. Judicious analysis of resultswith respect to time, temperature, and field strength are usefulin predicting the performance and capabilities of systems usingthe paper and the liquid. For additional information on th
18、esignificance of dissipation factor and relative permittivity, seeTest Methods D150.5.2 Test Method for Dielectric Breakdown Voltage andDielectric Strength of Solid Electrical Insulating Materials atCommercial Power Frequencies:5.2.1 A comprehensive discussion of the significance of thedielectric st
19、rength test as applied to solid, semi-solid, andliquid materials is given inAppendix X1 of Test Method D149.Other factors peculiar to high-quality composite insulations,such as oil-impregnated papers, are considered in the follow-ing:5.2.2 In tests involving high electrical stresses, immersionof cri
20、tical parts of a test circuit in oil is a widely used techniquefor inhibiting corona. However, it has limitations that must berecognized when using the submerged electrode option of thispractice (Note 1). Attack on the paper by corona generated inthe surrounding fluid at electrode edges can occur wh
21、ether thefluid is air or oil. Corona occurs at considerably higher voltagesin oil than in air. Thick and dense papers are more likely tocause discharge-initiated breakdowns. For interpretation ofbreakdown measurements consider the number of edgebreakdowns, implying discharge-initiated breakdowns.NOT
22、E 1Two techniques are in use in the industry for testingspecimens for dielectric breakdown voltage. In one, the test is made withthe electrodes and test specimen submerged in the impregnating liquidwhile in the other the electrodes are not submerged, that is, the specimenis tested in air. Much data
23、has been accumulated using the latter technique.These techniques yield different values of breakdown voltage. TestMethod D149 states preference for testing materials in the medium inwhich they are used. The use of submerged electrodes follows thispreference. When testing thick insulating boards, the
24、 use of submergedelectrodes is greatly preferred.5.2.3 The results of power frequency tests on oil impreg-nated papers are useful for screening, research, and qualitycontrol, provided that considerable judgment is exercised ininterpreting the results. The application of the test results toequipment
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