美标统一标准固体绝缘材料电压击穿的实验方法.doc
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1、ASTMD149美标原则固体绝缘材料电压击穿实验办法Standard Test Method for Dielectric Breakdown Voltage and Dielectric Strength of Solid Electrical Insulating Materials at Commercial Power Frequencies 固体电绝缘材料在工业用电频率下电压击穿和介电强度实验办法1. Scope*1.1 This test method covers procedures for the determination of dielectric strength of
2、 solid insulating materials at commercial power frequencies,under specified conditions.2,31.2 Unless otherwise specified,the tests shall be made at 60Hz. However,this test method is suitable for use at anyfrequency from 25 to 800 Hz. At frequencies above 800 Hz,dielectric heating is a potential prob
3、lem.1.3 This test method is intended to be used in conjunction with any ASTM standard or other document that refers to this test method. References to this document need to specify the particular options to be used (see 5.5).1.4 It is suitable for use at various temperatures,and in any suitable gase
4、ous or liquid surrounding medium.1.5 This test method is not intended for measuring the dielectric strength of materials that are fluid under the conditions of test.1.6 This test method is not intended for use in determining intrinsic dielectric strength,direct-voltage dielectric strength,or thermal
5、 failure under electrical stress (see Test MethodD3151).1.7 This test method is most commonly used to determine the dielectric breakdown voltage through the thickness of a test specimen (puncture). It is also suitable for use to determine dielectric breakdown voltage along the interface between a so
6、lid specimen and a gaseous or liquid surrounding medium (flashover). With the addition of instructions modifying Section 12,this test method is also suitable for use for proof testing.1.8 This test method is similar to IEC Publication 243-1. All procedures in this method are included in IEC 243-1. D
7、ifferences between this method and IEC 243-1 are largely editorial.1.9 This standard does not purport to address all of the safety concerns,if any,associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the app
8、licability of regulatory limitations prior to use. Specific hazardstatements are given in Section 7. Also see 6.4.1.ASTMD149美标原则固体绝缘材料电压击穿实验办法(三)3.1 Definitions:3.1.1dielectric breakdown voltage (electric breakdown voltage),nthe potential difference at which dielectric failureoccurs under prescribed
9、 conditions in an electrical insulatingmaterial located between two electrodes. (See also Appendix X1.)3.1.1.1 DiscussionThe term dielectric breakdown voltage is sometimes shortened to “breakdown voltage.”3.1.2dielectric failure (under test),nan event that is evidenced by an increase in conductance
10、in the dielectric under test limiting the electric field that can be sustained.3.1.3dielectric strength,nthe voltage gradient at which dielectric failure of the insulating material occurs under specific conditions of test.3.1.4 electric strength,nsee dielectric strength.3.1.4.1 DiscussionInternation
11、ally,“electric strength” is used almost universally.3.1.5flashover,na disruptive electrical discharge at the surface of electrical insulation or in the surrounding medium,which may or may not cause permanent damage to the insulation.3.1.6 For definitions of other terms relating to solid insulating m
12、aterials,refer to Terminology D1711.ASTMD149美标原则固体绝缘材料电压击穿实验办法(四)4. Summary of Test Method4.2 Most commonly,the test voltage is applied using simple test electrodes on opposite faces of specimens. The options for the specimens are that they be molded or cast,or cut from flat sheet or plate. Other el
13、ectrode and specimen configurations are also suitable for use to accommodate the geometry of the sample material,or to simulate a specific application for which the material is being evaluated.4.1 Alternating voltage at a commercial power frequency (60 Hz,unless otherwise specified) is applied to a
14、test specimen. The voltage is increased from zero or from a level well below the breakdown voltage,in one of three prescribed methods of voltage application,until dielectric failure of the test specimen occurs.5. Significance and Use5.1 The dielectric strength of an electrical insulating material is
15、 a property of interest for any application where an electrical field will be present. In many cases the dielectric strength of a material will be the determining factor in the design of the apparatus in which it is to be used.5.2 Tests made as specified herein are suitable for use to provide part o
16、f the information needed for determining suitability of a material for a given application;and also,for detecting changes or deviations from normal characteristics resulting from processing variables,aging conditions,or other manufacturing or environmental situations. This test method is useful for
17、process control,acceptance or research testing.5.3 Results obtained by this test method can seldom be used directly to determine the dielectric behavior of a material in an actual application. In most cases it is necessary that these results be evaluated by comparison with results obtained from othe
18、r functional tests or from tests on other materials,or both,in order to estimate their significance for a particular material. 5.4 Three methods for voltage application are specified in Section 12:Method A,Short-Time Test;Method B,Step-by- Step Test;and Method C,Slow Rate-of-Rise Test. Method A is t
19、he most commonly-used test for quality-control tests. However,the longer-time tests,Methods B and C,which usually will give lower test results,will potentially give more meaningful results when different materials are being compared with each other. If a test set with motor-driven voltage control is
20、 available,the slow rate-of-rise test is simpler and preferable to the step-by-step test. The results obtained from Methods B and C are comparable to each other.5.5 Documents specifying the use of this test method shall also specify:5.5.1 Method of voltage application,5.5.2 Voltage rate-of-rise,if s
21、low rate-of-rise method is specified,5.5.3 Specimen selection,preparation,and conditioning,5.5.4 Surrounding medium and temperature during test,5.5.5 Electrodes,5.5.6 Wherever possible,the failure criterion of the currentsensing element,and5.5.7 Any desired deviations from the recommended procedures
22、 as given.5.6 If any of the requirements listed in 5.5 are missing from the specifying document,then the recommendations for the several variables shall be followed.5.7 Unless the items listed in 5.5 are specified,tests made with such inadequate reference to this test method are not in conformance w
23、ith this test method. If the items listed in 5.5 are not closely controlled during the test,it is possible that the precisions stated in 15.2 and 15.3 will not be obtained.5.8 Variations in the failure criteria (current setting and response time) of the current sensing element significantly affect t
24、he test results.5.9 Appendix X1. contains a more complete discussion of the significance of dielectric strength tests.ASTMD149美标原则固体绝缘材料电压击穿实验办法(六)6. Apparatus6.1 Voltage SourceObtain the test voltage from a step-up transformer supplied from a variable sinusoidal low-voltage source. The transformer,
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