ANSI ASTM D150-2011 Standard Test Methods for AC Loss Characteristics and Permittivity (Dielectric Constant) of Solid Electrical Insulation《固体电绝缘材料的(恒定电介质)的交流损耗特性和介电常数试验方法》.pdf
《ANSI ASTM D150-2011 Standard Test Methods for AC Loss Characteristics and Permittivity (Dielectric Constant) of Solid Electrical Insulation《固体电绝缘材料的(恒定电介质)的交流损耗特性和介电常数试验方法》.pdf》由会员分享,可在线阅读,更多相关《ANSI ASTM D150-2011 Standard Test Methods for AC Loss Characteristics and Permittivity (Dielectric Constant) of Solid Electrical Insulation《固体电绝缘材料的(恒定电介质)的交流损耗特性和介电常数试验方法》.pdf(20页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D150 11Standard Test Methods forAC Loss Characteristics and Permittivity (DielectricConstant) of Solid Electrical Insulation1This standard is issued under the fixed designation D150; the number immediately following the designation indicates the year oforiginal adoption or, in the case
2、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.This standard has been approved for use by agencies of the U.S. Department of Defense.1. Scope*1.1 These
3、test methods cover the determination of relativepermittivity, dissipation factor, loss index, power factor, phaseangle, and loss angle of specimens of solid electrical insulatingmaterials when the standards used are lumped impedances. Thefrequency range addressed extends from less than 1 Hz tosevera
4、l hundred megahertz.NOTE 1In common usage, the word relative is frequently dropped.1.2 These test methods provide general information on avariety of electrodes, apparatus, and measurement techniques.Areader interested in issues associated with a specific materialneeds to consult ASTM standards or ot
5、her documents directlyapplicable to the material to be tested.2,31.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the appl
6、ica-bility of regulatory limitations prior to use. For specific hazardstatements, see 7.2.6.1 and 10.2.1.2. Referenced Documents2.1 ASTM Standards:4D374 Test Methods for Thickness of Solid Electrical Insu-lation (Metric) D0374_D0374MD618 Practice for Conditioning Plastics for TestingD1082 Test Metho
7、d for Dissipation Factor and Permittivity(Dielectric Constant) of MicaD1531 Test Methods for Relative Permittivity (DielectricConstant) and Dissipation Factor by Fluid DisplacementProcedures (Withdrawn 2012)5D1711 Terminology Relating to Electrical InsulationD5032 Practice for Maintaining Constant R
8、elative Humidityby Means of Aqueous Glycerin SolutionsE104 Practice for Maintaining Constant Relative Humidityby Means of Aqueous SolutionsE197 Specification for Enclosures and Servicing Units forTests Above and Below Room Temperature (Withdrawn1981)53. Terminology3.1 Definitions:3.1.1 Use Terminolo
9、gy D1711 for definitions of terms usedin these test methods and associated with electrical insulationmaterials.3.2 Definitions of Terms Specific to This Standard:3.2.1 capacitance, C, nthat property of a system ofconductors and dielectrics which permits the storage of elec-trically separated charges
10、 when potential differences existbetween the conductors.3.2.1.1 DiscussionCapacitance is the ratio of a quantity, q,of electricity to a potential difference, V.Acapacitance value isalways positive. The units are farads when the charge isexpressed in coulombs and the potential in volts:C 5 q/V (1)3.2
11、.2 dissipation factor, (D), (loss tangent), (tan ), ntheratio of the loss index (“) to the relative permittivity () whichis equal to the tangent of its loss angle () or the cotangent ofits phase angle () (see Fig. 1 and Fig. 2).D 5 “/ (2)3.2.2.1 Discussiona:D 5 tan 5 cot 5 Xp/Rp5 G/Cp5 1/CpRp(3)1The
12、se test methods are under the jurisdiction of ASTM Committee D09 onElectrical and Electronic Insulating Materials and are the direct responsibility ofSubcommittee D09.12 on Electrical Tests.Current edition approved Aug. 1, 2011. Published August 2011. Originallyapproved in 1922. Last previous editio
13、n approved in 2004 as D150 98 (2004).DOI: 10.1520/D0150-11.2R. Bartnikas, Chapter 2, “Alternating-Current Loss and PermittivityMeasurements,” Engineering Dielectrics, Vol. IIB, Electrical Properties of SolidInsulating Materials, Measurement Techniques, R. Bartnikas, Editor, STP 926,ASTM, Philadelphi
14、a, 1987.3R. Bartnikas, Chapter 1, “Dielectric Loss in Solids,” Engineering Dielectrics,Vol IIA, Electrical Properties of Solid Insulating Materials: Molecular Structure andElectrical Behavior, R. Bartnikas and R. M. Eichorn, Editors, STP 783, ASTMPhiladelphia, 1983.4For referenced ASTM standards, vi
15、sit 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.5The last approved version of this historical standard is referenced onwww.astm.org.*A Summary
16、of Changes section appears at the end of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United StatesThis international standard was developed in accordance with internationally recognized principles on standardization established in
17、the Decision on Principles for theDevelopment of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.1where:G = equivalent ac conductance,Xp= parallel reactance,Rp= equivalent ac parallel resistance,Cp= parallel capac
18、itance, and =2f (sinusoidal wave shape assumed).The reciprocal of the dissipation factor is the quality factor,Q, sometimes called the storage factor. The dissipation factor,D, of the capacitor is the same for both the series and parallelrepresentations as follows:D 5 RsCs5 1/RpCp(4)The relationship
19、s between series and parallel componentsare as follows:Cp5 Cs/11D2! (5)Rp/Rs5 11D2!/D25 111/D2! 5 11Q2(6)3.2.2.2 Discussionb: Series RepresentationWhile theparallel representation of an insulating material having adielectric loss (Fig. 3) is usually the proper representation, it isalways possible an
20、d occasionally desirable to represent acapacitor at a single frequency by a capacitance, Cs, in serieswith a resistance, Rs(Fig. 4 and Fig. 2).3.2.3 loss angle (phase defect angle), (), nthe anglewhose tangent is the dissipation factor or arctan “/ or whosecotangent is the phase angle.3.2.3.1 Discus
21、sionThe relation of phase angle and lossangle is shown in Fig. 1 and Fig. 2. Loss angle is sometimescalled the phase defect angle.3.2.4 loss index, “ (r“),nthe magnitude of the imagi-nary part of the relative complex permittivity; it is the productof the relative permittivity and dissipation factor.
22、3.2.4.1 DiscussionaIt may be expressed as:“ 5 D (7)5power loss/E23f 3volume 3constant!When the power loss is in watts, the applied voltage is involts per centimetre, the frequency is in hertz, the volume isthe cubic centimetres to which the voltage is applied, theconstant has the value of 5.556 1013
23、.3.2.4.2 DiscussionbLoss index is the term agreed uponinternationally. In the U.S.A. “ was formerly called the lossfactor.3.2.5 phase angle, ,nthe angle whose cotangent is thedissipation factor, arccot “/ and is also the angular differencein the phase between the sinusoidal alternating voltage appli
24、edto a dielectric and the component of the resulting currenthaving the same frequency as the voltage.3.2.5.1 DiscussionThe relation of phase angle and lossangle is shown in Fig. 1 and Fig. 2. Loss angle is sometimescalled the phase defect angle.3.2.6 power factor, PF, nthe ratio of the power in watt
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