BS 7663-1993 Methods of test for determination of permittivity and dissipation factor of electrical insulating material in sheet or tubular form《片型和管型电绝缘材料介电常数和耗散因数测定试验方法》.pdf
《BS 7663-1993 Methods of test for determination of permittivity and dissipation factor of electrical insulating material in sheet or tubular form《片型和管型电绝缘材料介电常数和耗散因数测定试验方法》.pdf》由会员分享,可在线阅读,更多相关《BS 7663-1993 Methods of test for determination of permittivity and dissipation factor of electrical insulating material in sheet or tubular form《片型和管型电绝缘材料介电常数和耗散因数测定试验方法》.pdf(18页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS 7663:1993 Methods of test for Determination of permittivity and dissipation factor of electrical insulating material in sheet or tubular form UDC |621.315.611-41 + 621.315.611-462|:621.317.33BS7663:1993 This British Standard, having been prepared under the directionof the Plastic
2、s and Rubber Standards Policy Committee, was published underthe authority of the Standards Board and comesintoeffect on 15July1993 BSI 01-2000 The following BSI references relate to the work on this standard: Committee reference PRM/25 Draft for comment 91/48847 DC ISBN 0 580 21798 1 Committees resp
3、onsible for this British Standard The preparation of this British Standard was entrusted by the Plastics and Rubber Standards Policy Committee (PRM/-) to Technical Committee PRM/25, upon which the following bodies were represented: British Floor Covering Manufacturers Association British Plastics Fe
4、deration British Rubber Manufacturers Association Ltd. EEA (Association of Electronics, Telecommunications and Business Equipment Industries) ERA Technology Ltd. Electrical and Electronic Insulation Association (BEAMA Ltd.) Federation of Resin Formulators and Applicators (Ferfa) Health and Safety Ex
5、ecutive RAPRA Technology Ltd. Amendments issued since publication Amd. No. Date CommentsBS7663:1993 BSI 01-2000 i Contents Page Committees responsible Inside front cover Foreword ii Introduction 1 1 Scope 1 2 References 1 3 Definitions 1 4 General 1 5 Test conditions 1 6 Number and handling of speci
6、mens 2 7 Measuring instruments 2 8 Method A: Air substitution technique 2 9 Method B: Two fluid immersion technique 5 10 Method C: Single fluid immersion technique 8 11 Precision 11 12 Test report 11 Annex A (informative) Modes of representation of capacitance 12 Annex B (informative) Liquids of kno
7、wn permittivity values 12 Figure 1 Example of electrode system for method A 3 Figure 2 Example of electrode system for method B: sheet specimens 6 Figure 3 Example of electrode system for method B: tubular specimens 7 Figure 4 Example of electrode system for method C 10 Figure A.1 Equivalence of ser
8、ies and parallel representations of a capacitor 12 List of references Inside back coverBS7663:1993 ii BSI 01-2000 Foreword This British Standard was prepared under the direction of the Plastics and Rubber Standards Policy Committee. Useful background information may be obtained from IEC250and from B
9、S2067both of which cover a wider frequency range than this standard. The resonance substitution methods described in BS2067have become obsolescent owing to the non-availability of suitable commercial equipment. The methods in this standard will, in due course, supersede those in BS 2067, except for
10、materials of very low dielectric loss or for measurements at high frequencies. A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsible for their correct application. Compliance with a British Standard does not of itself co
11、nfer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pages i and ii, pages1 to 12, an inside back cover and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicat
12、ed in the amendment table on the inside front cover.BS7663:1993 BSI 01-2000 1 Introduction The methods described may be used for sheet materials in the thickness range0.3mm to5.0mm. The air substitution method is suitable for sheet materials of thickness1.0mm to5.0mm. The two immersion methods are c
13、apable of better precision for sheet materials of thickness0.3mm to1.0mm and have the advantage that accurate knowledge of the specimen thickness is not required. One of the immersion methods is suitable for measurements on tubular specimens but individually constructed electrodes may be needed for
14、specific sizes of tube. 1 Scope This British Standard describes three methods for the measurement of permittivity and of dissipation factor of electrical insulating materials in the form of sheets or rigid circular tubes at frequencies between50Hz and1MHz, under normal ambient temperatures and condi
15、tions. The methods described are applicable to sheet materials in the thickness range0.3mm to5.0mm and for tubes at least75mm long. The methods are: an air substitution method, commonly called the “Lynch” method (method A) a two fluid immersion method (method B) a single fluid immersion method (meth
16、od C). Methods A and B are suitable for materials of permittivity up to 10.0. For materials of dissipation factor below250 10 6the precision achieved by these methods may not be acceptable. Method A requires accurate knowledge of the specimen thickness and should be used in all cases when this infor
17、mation is available. If the thickness is not accurately known, methods B or C may be used subject to the limitation that method C is suitable for materials for which a liquid matching its permittivity to within0.1is available. Method C is suitable for measurement of polyolefin sheets whose permittiv
18、ity sufficiently closely matches that of silicone oil of kinematic viscosity of1cSt to2cSt 1) . Methods B and C are not suitable for materials with an open cell structure. Method B is suitable for measurements on straight cylindrical tubes of circular cross section. 2 References 2.1 Normative refere
19、nces This British Standard incorporates, by reference, provisions from specific editions of other publications. These normative references are cited at the appropriate points in the text and the publications are listed on the inside back cover. Subsequent amendments to, or revisions of, any of these
20、 publications apply to this standard only when incorporated in it by updating or revision. 2.2 Informative references This British Standard refers to other publications that provide information or guidance. Editions of these publications current at the time of issue of this standard are listed on th
21、e inside back cover, but reference should be made to the latest editions. 3 Definitions For the purposes of this standard the definitions given in BS 4727-1:Group 10:1991 apply. 4 General In the methods described, the electrode assembly is an integral part of the specimen holder into which the speci
22、men and appropriate insulating fluid(s) are introduced, the capacitance and dissipation factor of the assembly being measured. Such systems introduce smaller errors in measurement than intimately applied electrodes, and facilitate the provision of guard electrodes which eliminate electric field dist
23、ortions and stray capacitances. Suitable electrode systems for each of the methods are described in 8.2, 9.2 and 10.2. Suitable measuring instruments are described in clause 7. 5 Test conditions Unless otherwise specified in the materials specification, specimens shall be conditioned for (20 4) h un
24、der the following conditions: temperature (23 2) C; relative humidity (50 5)% r.h. Unless otherwise specified in the materials specification, measurements shall be carried out under the same conditions. The specimen, electrode system and immersion fluid(s) and their environment shall be in thermal e
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