EN 61302-1995 en Electrical Insulating Materials Method to Evaluate the Resistance to Tracking and Erosion Rotating Wheel Dip Test《电气绝缘材料 评定耐起痕和耐蚀损的方法 旋转轮沉浸试验(IEC 1302-1995+勘误表 199.pdf
《EN 61302-1995 en Electrical Insulating Materials Method to Evaluate the Resistance to Tracking and Erosion Rotating Wheel Dip Test《电气绝缘材料 评定耐起痕和耐蚀损的方法 旋转轮沉浸试验(IEC 1302-1995+勘误表 199.pdf》由会员分享,可在线阅读,更多相关《EN 61302-1995 en Electrical Insulating Materials Method to Evaluate the Resistance to Tracking and Erosion Rotating Wheel Dip Test《电气绝缘材料 评定耐起痕和耐蚀损的方法 旋转轮沉浸试验(IEC 1302-1995+勘误表 199.pdf(21页珍藏版)》请在麦多课文档分享上搜索。
1、 CENELEC EN+b1302 95 3404583 OLbLL3 79l BRITISH STANDARD Electrical insulating materials - Method to evaluate the resistance to tracking and erosion - Rotating wheel dip test The European Standard EN 61302 : 1995 has the status of a British Standard NO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMIT
2、TED BY COPYRIGHT LAW BS EN 61302 : 1996 IEC 1302 : 1995 COPYRIGHT European Committee for Electrotechnical StandardizationLicensed by Information Handling ServicesBS EN 61302 : 1996 Amd. No. The foiowing BSI references relate to the work on this standard Committee reference GEW15 Draft for comment 91
3、/26630 DC ISBN O 580 24899 2 Committees responsible for this British Standard Date Text affected The preparation of this British Standard was entrusted to Technical Committee GEU15, Insulating materials, upon which the following bodies were represented British Ceramic Research Ltd. British Industria
4、l Ceramic Manufacturers Association British Telecommunications plc Department of Trade and Industry (National Physical Laboratory) Electrical and Electronic Insulation Association (BEAMA Ltd.) Electricity Association Federation of the Electronics Industry Ministry of Defence Rotating Electrical Mach
5、ines Association (BEAMA Ltd.) Ransmission and Distribution Association (BEAMA Ltd.) The following bodies were also represented in the drafting of the standard, through subcommittees and panels: AEX Technology British Cable Mmufacturem Association British Industrial Ceramic Manufacturem Association B
6、ritish Plastics Federation COPYRIGHT European Committee for Electrotechnical StandardizationLicensed by Information Handling ServicesCENELEC ENbb1302 95 3Y04583 OLb9LL5 560 BS EN 61302 : 1996 Contents page Committees responsible Inside front cover National foreword u Foreword 2 Text of EN 61302 3 O
7、BSI 1996 i COPYRIGHT European Committee for Electrotechnical StandardizationLicensed by Information Handling Services _ CENELEC EN*bL302 95 m 3404583 OLb9LLb 4T7 M BS EN 61302 : 1996 National foreword This British Sandard has been prepared by Technical Committee GEIJ15 and is the English language ve
8、rsion of EN 61302 : 1995 Electrical insulating materials - Method to maim until flashover occurs, or the leakage current exceeds a specified value2). The time to flash- over, or to exceed the specified leakage current, and observation of the nature and severity of degradation are the criteria used t
9、o compare materials. The test conditions described in this international standard lead to longer failure times than obtained from other tracking and erosion tests. IEC 112 and IEC 587 (see annex B) describe tests of much shorter duration, on smaller samples, to assess the ability of materials to wit
10、hstand electric stress when exposed to liquid contamination on one surface. These tests may rate materials differently from tests of longer duration. Salt-fog tersts (not yet standardized by IEC) are also in use. Such tests permit comparison of materials in the form in which they will be used in ser
11、vice. The test results are then dependent both on the materials used and the design of the test specimens. Such tests may also evaluate materials differently. ) Different specimen shapes, dimensions and electrode spacings may be needed in special cases. Results with such non-standard test specimens
12、shall be used only for comparison with similar specimens. 2, In order to obtain a sufficient acceleration of the degradation process, the test conditions described in this standard are such as to cause surface discharges on all insulating materials. Under less severe conditions. materials show a dif
13、ferent ability to resist the formation of surface discharges. An assessment of this ability would be of considerable practical interest, but no standardized test for this purpose is available at the present time. COPYRIGHT European Committee for Electrotechnical StandardizationLicensed by Informatio
14、n Handling Services - CENELEC ENwbL302 95 = 3404583 OLbL20 928 Page 4 EN 61302 : 1995 As the test conditions cause surface discharges on all insulating materials, it is only necessary to clean the surface of specimens before tests. If specimens are subjected to any conditioning prior to the test, su
15、ch as exposure to UV radiation, or to high humidity, the conditioning procedures should be described in detail. 2 Normatlve reference The following normative document contains provisions which, through reference in this text, constitute provisions of this International Standard. At the time of publi
16、cation, the edi- tion indicated was valid. All normative documents are subject to revision, and parties to agreements based on this International Standard are encouraged to investigate the possi- bility of applying the most recent edition of the normative document indicated below. Members of IEC and
17、 IS0 maintain registers of currently valid International Standards. IEC 493-1: 1974, Guide for the statistical analysis of ageing test data - Pat? 1: Methods based on mean values of normally distributed test results 3 Definitlons For the purpose of this International Standard, the following definiti
18、ons apply. 3.1 tracklng: Progressive degradation of the surface of a solid insulating material by local discharges to form conducting or partially conducting paths. 3.2 track: Conducting or partially conducting path created by tracking. 3.3 electrical eroslon: Wearing away of a solid insulating mate
19、rial by the action of elec- trical discharges without the formation of tracks. 1 3.4 rotatlng wheel life: Median time to failure under the specified test conditions. A failure occurs when a flashover of the test specimen takes place or the r.m.s. leakage current exceeds 300 mA. 4 Test specimen 4.1 S
20、pecimen configuration As a standard test specimen a rod tube of circula The outer diameter shall be 25 mm k 1 mm. r cro section shall be used. Rods shall be used whenever practically possible. If a tube is used, the wall thickness must be sufficient to prevent the test liquid from leaking through th
21、e tube wall due to electric erosion during the test. The ends of the tube shall be carefully sealed to pievent ingress of the test liquid into the interior of the tube. The sealing material must not be able COPYRIGHT European Committee for Electrotechnical StandardizationLicensed by Information Hand
22、ling ServicesPage 5 EN 61302 : 1995 to diffuse along the outer surface of the tube and thus influence the test result. When needed to obtain sufficient mechanical rigidity, a supporting rod of insulating material may be used inside the tube. A tubular electrode of stainless steel (see 5.1) is mounte
23、d at each end of the test specimen. The edge of the electrode facing the opposite electrode shall be square-cut and have a close fit to the test specimen. The high-voltage electrode shall have an extension of 0,2 mm stainless-steel plate to form a sliding electrode that connects the specimen intermi
24、ttently to the test voltage (see 5.1). The distance between the electrodes shall be 140 mm i 2 mm. An example of a specimen meeting this standard is shown in figure A.l of annex A. If specimens with other shapes and dimensions than specified in this standard are used, they shall be clearly described
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