IEC TS 61245-2015 Artificial pollution tests on high-voltage insulators to be used on d.c systems《直流系统用高压绝缘子的人工污秽试验》.pdf
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1、 IEC TS 61245 Edition 2.0 2015-03 TECHNICAL SPECIFICATION Artificial pollution tests on high-voltage ceramic and glass insulators to be used on d.c. systems IEC TS 61245:2015-03(en) THIS PUBLICATION IS COPYRIGHT PROTECTED Copyright 2015 IEC, Geneva, Switzerland All rights reserved. Unless otherwise
2、specified, no part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from either IEC or IECs member National Committee in the country of the requester. If you have any questions
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9、ec.ch/glossary More than 60 000 electrotechnical terminology entries in English and French extracted from the Terms and Definitions clause of IEC publications issued since 2002. Some entries have been collected from earlier publications of IEC TC 37, 77, 86 and CISPR. IEC Customer Service Centre - w
10、ebstore.iec.ch/csc If you wish to give us your feedback on this publication or need further assistance, please contact the Customer Service Centre: csciec.ch. IEC TS 61245 Edition 2.0 2015-03 TECHNICAL SPECIFICATION Artificial pollution tests on high-voltage ceramic and glass insulators to be used o
11、n d.c. systems INTERNATIONAL ELECTROTECHNICAL COMMISSION ICS 29.080.10 ISBN 978-2-8322-2546-2 Registered trademark of the International Electrotechnical Commission Warning! Make sure that you obtained this publication from an authorized distributor. 2 IEC TS 61245:2015 IEC 2015 CONTENTS FOREWORD . 4
12、 INTRODUCTION . 6 1 Scope 8 2 Normative references. 8 3 Terms and definitions 8 4 General test requirements 11 4.1 General . 11 4.2 Test methods 12 4.3 Arrangement of insulator for test 12 4.3.1 Test configuration 12 4.3.2 Insulator cleaning . 12 4.4 Requirements for the test circuit 13 4.4.1 Test v
13、oltage . 13 4.4.2 Atmospheric corrections . 13 4.4.3 Characteristics of the measuring systems . 13 4.4.4 Identification of flashover . 13 5 Salt fog method . 14 5.1 General information . 14 5.2 Salt solution 14 5.3 Spraying system . 16 5.4 Conditions before starting the test . 19 5.5 Preconditioning
14、 process 19 5.6 Withstand test . 20 5.7 Acceptance criteria for the withstand test . 20 6 Solid layer method . 20 6.1 General information . 20 6.2 Main characteristics of inert materials 21 6.3 Composition of the contaminating suspension 21 6.4 Application of the pollution layer 22 6.5 Determination
15、 of the degree of pollution of the test insulator 23 6.6 Test procedure 23 6.7 Withstand test and acceptance criteria . 24 Annex A (informative) Method for checking the uniformity of the layer . 25 Annex B (informative) Determination of the withstand characteristics of insulators . 27 B.1 General .
16、27 B.2 Determination of the maximum withstand degree of pollution at a given test voltage 27 B.3 Determination of the maximum withstand voltage at a given degree of pollution 27 B.4 Determination of the 50 % withstand voltage at a given degree of pollution . 28 Annex C (informative) Additional recom
17、mendations concerning the solid layer method procedures . 29 C.1 General . 29 C.2 Contamination practice 29 C.3 Drying of the pollution layer . 29 C.4 Checking the wetting action of the fog . 29 IEC TS 61245:2015 IEC 2015 3 C.5 Checking fog uniformity for large or complex test objects . 30 C.6 Fog i
18、nput to the test chamber 30 C.7 Duration of the withstand test 31 C.8 Evaluation of the reference salt deposit density (SDD) 31 Annex D (informative) Information to check equipment for artificial pollution tests . 32 Annex E (informative) Supplementary information on artificial pollution tests on in
19、sulators for voltage systems of 600 kV and above (solid layer method procedure B) 34 E.1 General . 34 E.2 Test chamber 34 E.3 Fog generator . 34 E.4 Wetting action and uniformity of fog density . 34 E.5 Test of very large insulators 34 Annex F (informative) Further investigation 35 Bibliography . 36
20、 Figure 1 Ripple amplitude and actual mean voltage, measured on a resistive load absorbing 100 mA . 9 Figure 2 Voltage drop and voltage overshoot and leakage current . 14 Figure 3 Value of factor b versus solution temperature . 16 Figure 4 Typical construction of fog spray nozzle 18 Figure 5 Test la
21、yout for inclined insulators 19 Figure A.1 Arrangement of the probe electrodes . 25 Figure A.2 Circuit diagram of the meter 26 Figure C.1 Determination of layer conductance and evaluation of its rise time T c= t 2 t 131 Table 1 Salt-fog method: correspondence between the value of salinity and volume
22、 conductivity of the solution at a temperature of 20 C 15 Table 2 Main characteristics of the inert materials used in solid layer suspensions . 21 Table 3 Kaolin (or Tonoko) composition: approximate correspondence between the reference degrees of pollution on the insulator and the volume conductivit
23、y of the suspension at a temperature of 20 C 22 Table D.1 (Provisional) 33 4 IEC TS 61245:2015 IEC 2015 INTERNATIONAL ELECTROTECHNICAL COMMISSION _ ARTIFICIAL POLLUTION TESTS ON HIGH-VOLTAGE CERAMIC AND GLASS INSULATORS TO BE USED ON D.C. SYSTEMS FOREWORD 1) The International Electrotechnical Commis
24、sion (IEC) is a worldwide organization for standardization comprising all national electrotechnical committees (IEC National Committees). The object of IEC is to promote international co-operation on all questions concerning standardization in the electrical and electronic fields. To this end and in
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