BS 4789-1972 Specification for ceramic components for use in envelopes for electronic tubes《电子管外壳用陶瓷部件规范》.pdf
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1、BRITISH STANDARD BS 4789:1972 Specification for Ceramic components for use in envelopes for electronic tubes UDC 621.385.032.7:621.315.612:666.3BS4789:1972 This British Standard, having been approved by the Telecommunication Industry Standards Committee, was published under the authority ofthe Execu
2、tive Board on 30March1972 BSI 12-1999 The following BSI references relate to the work on this standard: Committee reference TLE/5 Draft for comment 71/20608 ISBN 580 06699 1 Co-operating organizations The Telecommunication Industry Standards Committee, under whose supervision this British Standard w
3、as prepared, consists of representatives from the following Government departments and scientific and industrial organizations: British Broadcasting Corporation British Electrical and Allied Manufacturers Association British Radio Equipment Manufacturers Association British Radio Valve Manufacturers
4、 Association* British Railways Board Cable and Wireless Ltd. Crown Agents for Oversea Governments and Administrations Department of Employment and Productivity (H.M. Factory Inspectorate) Electrical Contractors Association (Incorporated) Electrical Research Association Electricity Council, the Centr
5、al Electricity Generating Board and the Area Boards in England and Wales Electronic Engineering Association* Electronic Valve and Semi-Conductor Manufacturers Association* Home Office Institution of Electrical Engineers Institution of Electronic and Radio Engineers* Institution of Production Enginee
6、rs Ministry of Defence, Army Department Ministry of Defence (Directorate of Standardization) Ministry of Defence, Navy Department* Ministry of Defence, Procurement Executive Post Office Radio and Electronic Component Manufacturers Federation Relay Services Association of Great Britain Science Resear
7、ch Council Radio and Space Research Station Scientific Instrument Manufacturers Association* Society of British Aerospace Companies Ltd. Telecommunication Engineering and Manufacturing Association The Government department and scientific and industrial organizations marked with an asterisk in the ab
8、ove list, together with the following, were directly represented on the committee entrusted with the preparation of this British Standard: United Kingdom Atomic Energy Authority. British Ceramic Research Association. Individual experts. Amendments issued since publication Amd. No. Date CommentsBS478
9、9:1972 BSI 12-1999 i Contents Page Co-operating organizations Inside front cover Foreword iii 1 General 1 1.1 Scope 1 1.2 Definitions 1 1.3 General requirements 1 2 Properties and test methods 2 2.1 Test sample requirements 2 2.2 Electrical properties 2 2.2.1 Power factor (tan ) and permittivity (”)
10、 2 2.2.2 Temperature coefficient of permittivity 3 2.2.3 Volume resistivity 3 2.3 Mechanical properties 3 2.3.1 Determination of cross-breaking strength 3 2.3.2 Youngs modulus of elasticity 3 2.4 Thermal properties 4 2.4.1 Coefficient of linear expansion 4 2.4.2 Thermal conductivity 4 2.4.3 Maximum
11、thermal shock temperature 4 2.4.4 Deformation temperature 4 2.5 General properties 4 2.5.1 Cracks and porosity 4 2.5.2 Density 4 2.5.3 Grain size 4 2.5.4 Chemical stability 4 2.5.5 Vacuum tightness 4 3 Test schedules 4 3.1 Type testing 4 3.1.1 Selection of tests 4 3.1.2 Frequency of testing 4 3.2 Ba
12、tch testing 5 3.2.1 Selection of tests 5 3.2.2 Frequency of testing 5 3.3 Component testing 5 3.3.1 Selection of tests 5 3.3.2 Frequency of testing 5 3.3.3 Mechanical and visual tests 5 Appendix A Conditioning of samples 6 Appendix B Determination of cross-breaking strength 6 Appendix C Determinatio
13、n of deformation temperature 7 Appendix D Method of test for cracks and porosity 8 Appendix E Method of preparing a sample for grain size measurement 8 Appendix F Method of test for acid resistance 9 Appendix G Method of testing for vacuum tightness 9 Appendix H References 12 Figure 1 Test pieces 7
14、Figure 2 Determining the angle of bend 7BS4789:1972 ii BSI 12-1999 Page Figure 3 Apparatus for vacuum tightness test 10 Table 1 Samples required 2 Table 2 Loss factor 3 Table 3 Volume resistivity 3 Table 4 Thermal conductivity 4BS4789:1972 BSI 12-1999 iii Foreword This standard makes reference to th
15、e following British Standards: BS 784, Methods of test for chemical stoneware. BS 903, Methods of testing vulcanized rubber Part A26: Determination of hardness. BS 1598, Ceramic insulating materials for general electrical purposes. BS 4518, Metric dimensions of toroidal sealing rings and their housi
16、ngs (O-rings). This British Standard which has been prepared under the authority of the Telecommunication Industry Standards Committee is based on a draft prepared on behalf of the Department for Co-ordination of Valve Development, Ministry of Defence, by a working party drawn from government establ
17、ishments and from the tube industry. It has been discussed with the ceramic manufacturers, and the British Ceramic Research Association has tested a wide range of commercial materials to establish realistic limits (Ref. 1, Appendix H). The standard deals with three categories of materials as follows
18、: Category 1. A high grade material suitable for valve body parts. Category 2. A special grade suitable for high power microwave windows. Category 3. A special grade with high thermal conductivity. All categories are required to be vacuum tight. The standard does not deal with the ceramic materials
19、sometimes used for internal parts in valve construction. Although no explicit reference is made to any material, the properties called for in the standard for Categories1 and2 are those normally associated with high alumina content and those for Category3 with high beryllia content. Other materials
20、may, however, be accepted provided that allowance is made by the user for characteristic changes such as in the dielectric constant. The standard is closely related to BS1598:1964, “Ceramic insulating materials for general electrical purposes”. However, the uses to which the ceramics will be put in
21、tubes give rise to certain special requirements which involve either new limits or new tests. In the main these changes are as follows: 1) The ceramics must be vacuum tight. The standard includes details of a suitable test and the performance required. 2) High strength is required in order to give r
22、easonable latitude in the design of ceramic-metal seals, which usually involves some degree of mismatch in expansion coefficient over part of the working or processing temperature range. 3) High thermal conductivity is important both in increasing thermal shock resistance and in avoiding excessive t
23、emperature rise in high power applications. 4) The ceramics should be capable of being metallized consistently. This requires close reproducibility of microstructure. 5) They require to have a high stability under a variety of processing and user conditions, that include firing in vacuum and in hydr
24、ogen for which tests have been laid down. They may also have to withstand bombardment by X-rays, electrons or ions. Working temperatures of up to500 C may be encountered in use and the trend is towards still higher temperatures (up to1000 C) for some applications in the future. A wide variety of siz
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