BS 2050-1978 Specification for electrical resistance of conducting and antistatic products made from flexible polymeric material《软聚合材料导电和抗静电制品电阻规范》.pdf
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1、BRITISH STANDARD BS 2050:1978 Specification for Electrical resistance of conducting and antistatic products made from flexible polymeric material UDC 678 076:678.01:537.311:621.315.5BS2050:1978 This British Standard, having been prepared under the directionof the Plastics StandardsCommittee and the
2、Rubber Standards Committee, was published under the authorityof the Executive Boardon 28 February 1978 BSI 02-1999 First published December 1953 First revision February 1958 Second revision February 1961 Third revision February 1978 The following BSI references relate to the work on this standard: C
3、ommittee reference PLM/RUM/9 Draft for comment 75/52245 DC ISBN 0 580 10014 6 Cooperating organizations The Plastics Standards Committee and the Rubber Standards Committee, under whose direction this British Standard was prepared, consists of representatives from the following Government departments
4、 and scientific and industrial organizations: British Plastics Federation* British Rubber Manufacturers Association* Chemical Industries Association Department of Industry (Chemicals and Textiles) Department of Industry (National Physical Laboratory) Department of the Environment (Building Research
5、Establishment) Electrical and Electronic and Insulation Association (BEAMA) Electrical Installation Equipment Manufacturers Association (BEAMA) Electrical Research Association* Engineering Equipment Users Association Institution of Production Engineers Ministry of Defence* Plastics and Rubber Instit
6、ute Post Office Royal Institute of British Architects Rubber and Plastics Research Association of Great Britain* Rubber Growers Association Society of Chemical Industry Society of Motor Manufacturers and Traders Limited The Malaysian Rubber Producers Research Association The organizations marked wit
7、h an asterisk in the above list, together with the following, were directly represented on the committee entrusted with the preparation of this British Standard: Association of Supervisory and Executive Engineers British Surgical Trades Association Incorporated Department of Health and Social Securi
8、ty National Coal Board Tyre Manufacturers Conference (Service Committee) Amendments issued since publication Amd. No. Date of issue Comments 4280 July 1983 4499 May 1984 Indicated by a sideline in the marginBS2050:1978 BSI 02-1999 i Contents Page Cooperating organizations Inside front cover Foreword
9、 ii 0 Introduction 1 1 Scope and field of application 1 2 References 1 3 Methods of test 1 4 Requirements 2 5 Marking 2 6 Number of tests 3 Appendix A Methods for the determination of electrical resistance 4 Table 1 Electrical requirements for hospital products 2 Table 2 Electrical requirements for
10、industrial products 3 Publications referred to Inside back coverBS2050:1978 ii BSI 02-1999 Foreword This standard has been prepared under the direction of the Plastics Standards Committee and the Rubber Standards Committee. It was originally published in1953 and was revised in 1958 and 1961. The ear
11、ly editions covered conducting and antistatic rubber products deriving their electrical conductivity from carbon black. The 1961 edition and the present document have been extended to cover all types of flexible polymers and to permit the electrical conductivity to be derived from substances other t
12、han carbon black. This standard is based on the following three draft International Standards (ISO/DIS) amended in accordance with the United Kingdom comments submitted on these draft standards. ISO/DIS 2878, Antistatic and conductive rubber products Determination of electrical resistance. ISO/DIS 2
13、882, Antistatic and conductive products for hospital use Electrical resistance. ISO/DIS 2883, Antistatic and conductive products for industrial use Electrical resistance. In this revision the electrical requirements for hospital products have been segregated from those for industrial products. The l
14、ist of industrial products has been augmented by the addition of synchronous belts, textile cots and aprons and by the expansion of the requirements for tyres, solid and pneumatic, for various applications. In addition the distinction made in the definitions in the earlier editions between conductiv
15、e and antistatic products has been found to be misleading and has therefore been omitted from this revision. A British Standards 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
16、 Standard does not of itself confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pages i and ii, pages1 to 6, an inside back cover and a back cover. This standard has been updated (see copyright date) and may have had amendments inco
17、rporated. This will be indicated in the amendment table on theinside front cover.BS2050:1978 BSI 02-1999 1 0 Introduction The elimination or reduction of static charges is important in many applications. While the antistatic properties of an article are influenced by the electrostatic charging chara
18、cteristics, the only way to ensure that charges are never developed on an object is generally to provide suitable leakage paths. This British Standard deals exclusively with products which may form part of such leakage paths. Polymeric compounds can be made into conductors of electricity by the inco
19、rporation in the compound of conducting particles, especially carbon black, or ionizable materials, or a combination of the two. The addition of carbon black to a polymer in sufficient quantities causes a conducting network of carbon particles to be formed within the mixture, and materials with a wi
20、de range of electrical conductivity can be produced. The carbon structure is sensitive to strain and the electrical resistance of the material depends on the degree of strain to which it has been subjected and the time and temperature history after strain. Materials made conducting by the addition o
21、f ionizable materials are generally of a higher order of magnitude of resistivity than those containing carbon but do not change appreciably in resistivity with strain. Their resistivity decreases with increase in temperature. During service the resistance of products made from both types of materia
22、l may change significantly and it is therefore necessary to ensure that the product is capable of fulfilling its designed function of dissipating electrostatic charges and conducting electricity during the whole of its life. In general the resistance of new products should not exceed 10 7 W but in c
23、ertain cases, or with certain materials, higher values may be permitted. Values lower than5 10 4 may not give adequate protection against fire from ignition of the rubber and against dangerous electric shock where there is any risk of apparatus becoming defective when operating at a voltage of 250V
24、to earth. A method for the measurement of the resistivity of specially prepared test pieces of antistatic and conducting rubber is described in BS2044. 1 Scope and field of application 1.1 This British Standard specifies limits of electrical resistance for antistatic and conducting articles and prod
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