ASTM D2864-2007 Standard Terminology Relating to Electrical Insulating Liquids and Gases《电绝缘液体和气体相关标准术语》.pdf
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1、Designation: D 2864 07Standard Terminology Relating toElectrical Insulating Liquids and Gases1This standard is issued under the fixed designation D 2864; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A
2、number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.INTRODUCTIONThe definitions contained in this terminology pertain to terms as they are used in conjunction withfluid insulating materials. Insofar
3、 as possible, the definitions are consistent with accepted generalusage, and may also contain additional information deemed to be of value in testing of fluid insulatingmaterials.1. Referenced Documents1.1 ASTM Standards:2D611 Test Methods for Aniline Point and Mixed AnilinePoint of Petroleum Produc
4、ts and Hydrocarbon SolventsD 2007 Test Method for Characteristic Groups in RubberExtender and Processing Oils and Other Petroleum-Derived Oils by the Clay-Gel Absorption Chromato-graphic MethodD 2140 Test Method for Carbon-Type Composition of In-sulating Oils of Petroleum OriginD 2300 Test Method fo
5、r Gassing of Electrical InsulatingLiquids Under Electrical Stress and Ionization (ModifiedPirelli Method)D 2500 Test Method for Cloud Point of Petroleum ProductsD3117 Test Method for WaxAppearance Point of DistillateFuelsE 355 Practice for Gas Chromatography Terms and Rela-tionships2. Terminologyacs
6、ymbol used to designate an electric voltage or currentwhose amplitude varies periodically as a function of time, itsaverage value over one complete period being zero. Onecomplete repetition of the wave pattern is referred to as aCYCLE, and the number of cycles occurring in one secondis called the FR
7、EQUENCY, measured in hertz (Hz). Forexample, the electricity supplied by commercial utilitycompanies in the United States is, in most localities, 60 Hz,although other frequencies may be encountered.acid treatinga refining process in which an unfinishedpetroleum insulating oil is contacted with sulfu
8、ric acid toimprove its color, odor, stability, and other properties.ac loss characteristicsthose properties of a dielectric orinsulation system (such as dissipation factor, power factor,and loss index) that may be used as a measure of the poweror energy losses that would result from the use of suchm
9、aterial in an ac electric field.additivea chemical compound or compounds added to aninsulating fluid for the purpose of imparting new propertiesor altering those properties which the fluid already has.ambient temperaturethe temperature of the surroundingatmosphere as determined by an instrument shie
10、lded fromdirect or reflected rays of the sun.aniline pointthe minimum temperature for complete misci-bility of equal volumes of aniline and the sample under test.See Test Methods D611. In comparing two samples ofsimilar molecular weight, the aniline point can be used as ameans of comparing aromatic
11、content of the two samples. Aproduct of high aniline point will be low in aromatics andnaphthenes, and therefore high in paraffins.API gravityan arbitrary scale developed by the AmericanPetroleum Institute and frequently used in reference topetroleum insulating oil. The relationship between APIgravi
12、ty and specific gravity 60/60F is defined by thefollowing:Deg API Gravity at 60F 5 141.5/sp gr 60/60F!2131.51This terminology is under the jurisdiction of ASTM Committee D27 onElectrical Insulating Liquids and Gases and is the direct responsibility of Subcom-mittee D27.15 on Planning Resource and De
13、velopment.Current edition approved July 1, 2007. Published August 2007. Originallyapproved in 1970. Last previous edition approved in 2006 as D 2864 06.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMSta
14、ndards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.aromaticsthat class of organic compounds which behavechemically like benzene. They are cyclic
15、unsaturated organiccompounds that can sustain an induced electronic ringcurrent due to delocalization of electrons around the ring.DISCUSSIONEmpirically, the aromatic portion of a mineral insulat-ing oil can be estimated by correlation with physical properties (SeeTest Method D 2140), or by selectiv
16、e adsorption on clay-gel (See TestMethod D 2007).askarela generic term for a group of synthetic, fire-resistant,chlorinated aromatic hydrocarbons used as electrical insu-lating liquids. They have a property under arcing conditionssuch that any gases produced will consist predominantly ofnoncombustib
17、le hydrogen chloride with lesser amounts ofcombustible gases.atomic absorptionthe absorption of radiant energy byground state atoms. Substances when dispersed as an atomicvapor will absorb characteristic radiations identical to thosewhich the same substances can emit. This property is thebasis for a
18、nalysis by atomic absorption spectroscopy.capacitivitythe same as permittivity, relative.colora quality of visible phenomena of insulating fluids, thenumerical value for which is derived by comparing thisquality using transmitted light with that of a series ofnumbered reference bustible gasesflammab
19、le gases formed from breakdown(partial or complete) of some insulating materials subjectedto electrical or thermal stress, or both.conductancethe ratio of the current carried through amaterial to the difference in potential applied across thematerial. It is the reciprocal of resistance. The unit is:
20、(ohm)1or siemens.DISCUSSION1Conductance is a general term. Specific referencemay be made to conductance dc and conductance ac.DISCUSSION2For dielectrics the conductance may be dependenton the electrification time.conductance, apparent dcthe dc conductance measured atthe end of a specific electrifica
21、tion time. The “apparent dcconductance” is the reciprocal of the “apparent dc resis-tance.” The unit is: (ohm)1or siemens.DISCUSSIONThe term “apparent dc conductance” is used to distin-guish the current-voltage relationship found in electrical insulatingmaterials, where the current (leakage plus abs
22、orption) usually decreaseswith time, from the relationship found in metallic conductors where thesteady-state current is reached in a fraction of a second.conductance, dcthe ratio of the total current (in amperes)passing through a material to the dc voltage (in volts) appliedbetween two electrodes t
23、hat are in contact with, or immersedin a specimen. The “dc conductance” is the reciprocal of the“dc resistance.” The unit is: (ohm)1or siemens.conductivitythe ratio of the current density carried througha specimen to the potential gradient paralleling the current.This is numerically equal to the con
24、ductance betweenopposite faces of a unit cube of liquid. It is the reciprocal ofresistivity.DISCUSSION1Conductivity is a general term. Specific referencemay be made to conductivity, dc.DISCUSSION2For dielectrics the conductivity may be dependenton the electrification time. (See also conductivity, ap
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