BS 3580-1964 Guide to design considerations on the strength of screw threads《螺纹强度设计考虑指南》.pdf
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1、BRITISH STANDARD CONFIRMED AUGUST 1985 BS 3580:1964 Guide to design considerations on The strength of screw threadsBS3580:1964 This Guide, having been approvedby the Mechanical Engineering Industry Standards Committee and endorsed by the Chairman of the Engineering Divisional Council, was publishedu
2、nder the authority ofthe General Council on 28February1964 BSI 12-1999 The following BSI references relate to the work on this standard: Committee references MEE/1, MEE/1/2 Draft for comment A(MEE) 9770 ISBN0 580 35254 4 Co-operating organizations The Mechanical Engineering Industry Standards Commit
3、tee, under whose supervision this British Standard was prepared, consists of representatives from the following Government departments and scientific and industrial organizations: The Government departments and scientific and industrial organizations marked with an asterisk in the above list, togeth
4、er with the following were directly represented on the Committee entrusted with the preparation of this standard: Admiralty* Gas Council Air Ministry High Commission of India Associated Offices Technical Committee Institute of Marine Engineers Association of Consulting Engineers Institute of Petrole
5、um (Incorporated) Institution of Civil Engineers* Association of Mining Electrical and Institution of Gas Engineers Mechanical Engineers Institution of Heating and Ventilating British Chemical Plant Manufacturers Engineers Association Institution of Mechanical Engineers* British Compressed Air Socie
6、ty Institution of Mechanical Engineers British Electrical and Allied Manufacturers (Automobile Division) Association* Institution of Production Engineers* British Gear Manufacturers Association Locomotive and Allied Manufacturers British Internal Combustion Engine Association of Great Britain* Manuf
7、acturers Association London Transport Board* British Iron and Steel Federation Machine Tool Trades Association British Mechanical Engineering Federation* Ministry of Labour (H.M. Factory Inspectorate) British Railways Board* Ministry of Power Crown Agents for Oversea Governments and Ministry of Publ
8、ic Buildings and Works Administrations Ministry of Transport D.S.I.R. National Engineering Laboratory* National Coal Board Electricity Council, the Generating Board and National Physical Laboratory (D.S.I.R.)* the Area Boards in England and Wales Radio Industry Council* Engineering Equipment Users A
9、ssociation* War Office* Agricultural Engineers Association Scientific Instrument Manufacturers British Bolt, Nut, Screw the strength of a threaded bar, not assembled with a nut, is not considered. For the latter, reference should be made to appropriate theoretical and experimental work on notched an
10、d threaded bars( 1 )( 2 ) 1) . NOTE“Nut” and “bolt” are used throughout in the general sense to mean internally and externally threaded members respectively, except where it is obvious that ordinary nuts and bolts are meant. The effect of the various strength factors are considered under the followi
11、ng headings: Materials Method of production General form of threaded members and type of loading Diameter, pitch, D/p ratio and length of engagement Thread form Depth of engagement, degree of fit and truncation of threads Friction conditions. 1.2 Symbols For ease of reference, symbols used throughou
12、t this guide are listed inAppendix C. General 2.1 Introduction To a given problem of thread design, there may be several solutions, between which it is not possible to choose in the light of present knowledge. The preliminary choice of the general lines of a design must therefore still be based, to
13、some extent, on previous experience with similar problems. 2.2 Design principles A threaded fastener will usually have to be designed to withstand axial loads, which may be static, fluctuating, or impactive in nature. Supplementary bending and shear may be present; torsional loads will arise mainly
14、from thread friction on tightening and will be static in nature. The strength of a joint assembly employing threaded fasteners will largely depend, particularly under fluctuating loads or shear loading such as occur in structural steelwork 2) , on the overall design and provision of adequate pre-ten
15、sioning; the latter will, of course, demand adequate static strength of the fasteners employed. Bearing this in mind, the following is a discussion of the factors affecting the intrinsic strength of threaded connections, with only brief reference to the effects of joint design. 1) A list of referenc
16、es is given at the end of this guide. 2) See BS3139, “High strength friction grip bolts for structural engineering”. and BS3294, “The use of high strength friction grip bolts in structural steelwork”.BS3580:1964 2 BSI 12-1999 It will be appreciated that the factors considered are often interrelated,
17、 e.g.,the optimum tensile strength of the nut material for a given bolt may depend not only on the tensile strength of the bolt material but also on the pitch and diametral fit of the threads. At the same time, while it may be desirable to try to achieve the optimum combination of materials and dime
18、nsions for a special application, it is necessary for ordinary mass-produced bolts and nuts to use a restricted number of material combinations, each of which will have to serve for a range of other variables, e.g.for various classes of fit. Thus, for instance, it may be economically preferable to a
19、ccept the strength of stock components, and to design accordingly rather than to design for the higher strength available from the use of special components. 2.3 Form of bolt failure It is desirable, where possible, to design a fastener so that failure under tensile load would occur by breakage acro
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