ASTM D1830-1999(2012) Standard Test Method for Thermal Endurance of Flexible Sheet Materials Used for Electrical Insulation by the Curved Electrode Method《用曲线形电极法测定电绝缘柔性薄板材料的耐热性的标准.pdf
《ASTM D1830-1999(2012) Standard Test Method for Thermal Endurance of Flexible Sheet Materials Used for Electrical Insulation by the Curved Electrode Method《用曲线形电极法测定电绝缘柔性薄板材料的耐热性的标准.pdf》由会员分享,可在线阅读,更多相关《ASTM D1830-1999(2012) Standard Test Method for Thermal Endurance of Flexible Sheet Materials Used for Electrical Insulation by the Curved Electrode Method《用曲线形电极法测定电绝缘柔性薄板材料的耐热性的标准.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D1830 99 (Reapproved 2012)An American National StandardStandard Test Method forThermal Endurance of Flexible Sheet Materials Used forElectrical Insulation by the Curved Electrode Method1This standard is issued under the fixed designation D1830; the number immediately following the desig
2、nation indicates the year oforiginal adoption or, in the case 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
3、agencies of the Department of Defense.1. Scope1.1 This test method provides a procedure for evaluatingthermal endurance of flexible sheet materials by determiningdielectric breakdown voltage at room temperature after agingin air at selected elevated temperatures. Thermal endurance isexpressed in ter
4、ms of a temperature index.1.2 This test method is applicable to such solid electricalinsulating materials as coated fabrics, dielectric films, compos-ite laminates, and other materials where retention of flexibilityafter heat aging is of major importance (see Note 4).1.3 This test method is not inte
5、nded for the evaluation ofrigid laminate materials nor for the determination of thermalendurance of those materials which are not expected orrequired to retain flexibility in actual service.1.4 The values stated in acceptable metric units are to beregarded as the standard. The values in parentheses
6、are forinformation only.1.5 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 applica-bility of regulatory limitations prio
7、r to use. For a specifichazard statement, see 10.1.2. Referenced Documents2.1 ASTM Standards:2D149 Test Method for Dielectric Breakdown Voltage andDielectric Strength of Solid Electrical Insulating Materialsat Commercial Power FrequenciesD374 Test Methods for Thickness of Solid Electrical Insu-latio
8、nD5423 Specification for Forced-Convection LaboratoryOvens for Evaluation of Electrical Insulation2.2 Institute of Electrical and Electronics Engineers Pub-lications:3IEEE No. 1 General Principles for Temperature Limits inthe Rating of Electrical EquipmentIEEE No. 101A Guide for the Statistical Anal
9、ysis of Ther-mal Life Test Data (including Appendix A)2.3 IEC Publications:IEC 216 Guide for the Determination of Thermal EnduranceProperties of Electrical Insulating Materials (Parts 1 and2)43. Terminology3.1 Definitions:3.1.1 temperature index, na number which permits com-parison of the temperatur
10、e/time characteristics of an electricalinsulating material, or a simple combination of materials, basedon the temperature in degrees Celsius which is obtained byextrapolating the Arrhenius plot of life versus temperature to aspecified time, usually 20 000 h.3.1.2 thermal life, nthe time necessary fo
11、r a specificproperty of a material, or simple combination of materials, todegrade to a defined end point when aged at a specifictemperature.3.1.3 thermal life curve, na graphical representation ofthermal life at a specified aging temperature in which the valueof a property of a material, or a simple
12、 combination ofmaterials, is measured at room temperature and the valuesplotted as a function of time.3.2 Definitions of Terms Specific to This Standard:1This test method is under the jurisdiction of ASTM Committee D09 onElectrical and Electronic Insulating Materials and is the direct responsibility
13、 ofSubcommittee D09.19 on Dielectric Sheet and Roll ProductsCurrent edition approved Jan. 1, 2012. Published January 2012. Originallyapproved in 1961. Last previous edition approved in 1999 as D1830 99(2005).DOI: 10.1520/D1830-99R12.2For referenced ASTM standards, visit the ASTM website, www.astm.or
14、g, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from Institute of Electrical and Electronics Engineers, Inc. (IEEE),445 Hoes Ln., P.O. Box 1331, Piscataway, NJ 08854
15、-1331.4Available from American National Standards Institute (ANSI), 25 W. 43rd St.,4th Floor, New York, NY 10036.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.2.1 thermal endurance grapha straight-line plot of thelogarithm of the
16、rmal life in hours versus the reciprocal of theabsolute aging temperature in kelvins (also known as theArrhenius plot).4. Summary of Test Method4.1 Specimens are aged in air at a minimum of threetemperatures above the expected use temperature of the mate-rial. Dielectric breakdown voltage tests in a
17、ir at room tempera-ture are periodically made to determine the time of aging ateach test temperature required to reduce the breakdown voltageto a value of 12 kV/mm (300 V/mil) of original thickness.These thermal life values are used to construct a thermalendurance graph by means of which temperature
18、 indices maybe estimated corresponding to a thermal life as specified in thematerial specification or as agreed upon between the user andthe supplier.NOTE 1This test method is not applicable to materials having aninitial dielectric breakdown voltage of less than 12 kV/mm (300 V/mil) oforiginal thick
19、ness unless lower endpoint values are agreed upon orindicated in the applicable material specifications.5. Significance and Use5.1 Amajor factor affecting the life of insulating materials isthermal degradation. Other factors, such as moisture andvibration, may cause failures after the material has b
20、eenweakened by thermal degradation.5.2 Electrical insulation is effective in electrical equipmentonly as long as it retains its physical and electrical integrity.Thermal degradation may be characterized by weight change,porosity, crazing, and generally a reduction in flexibility, and isusually accom
21、panied by an ultimate reduction in dielectricbreakdown voltage.6. Apparatus6.1 Electrode Test FixtureThe fixture shall be in accor-dance with the dimensions shown in Fig. 1 and Fig. 2.Electrodes shall be of polished brass, with the upper electrodehaving a mass of 1.8 6 0.05 kg (4.0 6 0.1 lb).6.2 Die
22、lectric Breakdown Test SetThe set shall meet therequirements of Test Method D149.6.3 OvensOvens shall meet the requirements of Specifi-cation D5423 Type II.6.4 MicrometerThe micrometer shall be of the dead-weight type specified in Methods C or D of Test MethodsD374, having a pressor foot 6.35 6 0.03
23、 mm (0.25 6 0.001 in.)in diameter and an anvil of at least 50 mm (2 in.) in diameterand shall exert a pressure of 0.17 6 0.01 MPa (25 6 2 psi) onthe anvil.7. Test Specimens7.1 Test specimens shall be at least 250 mm (9.84 in.) longby 130 mm (5.12 in.) wide, with the machine direction parallelto the
24、longer direction.7.2 A set of test specimens consists of five specimens.Prepare one set for initial (unaged) tests and five sets for eachaging temperature chosen (15 sets for three temperatures).7.3 In the case of coated glass fabrics, make tests on0.18-mm (0.007-in.) material having 0.08-mm (0.003-
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