BS ISO 6336-1-2006 Calculation of load capacity of spur and helical gears - Basic principles introduction and general influence factors《正齿轮和斜齿轮负载能力的计算 基本原理、介绍和一般影响因素》.pdf
《BS ISO 6336-1-2006 Calculation of load capacity of spur and helical gears - Basic principles introduction and general influence factors《正齿轮和斜齿轮负载能力的计算 基本原理、介绍和一般影响因素》.pdf》由会员分享,可在线阅读,更多相关《BS ISO 6336-1-2006 Calculation of load capacity of spur and helical gears - Basic principles introduction and general influence factors《正齿轮和斜齿轮负载能力的计算 基本原理、介绍和一般影响因素》.pdf(120页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARDBS ISO 6336-1:2006Incorporating corrigendum June 2008Calculation of load capacity of spur and helical gears Part 1: Basic principles, introduction and general influence factorsICS 21.200 g49g50g3g38g50g51g60g44g49g42g3g58g44g55g43g50g56g55g3g37g54g44g3g51g40g53g48g44g54g54g44g50g49g3
2、g40g59g38g40g51g55g3g36g54g3g51g40g53g48g44g55g55g40g39g3g37g60g3g38g50g51g60g53g44g42g43g55g3g47g36g58BS ISO 6336-1:2006This British Standard was published under the authority of the Standards Policy and Strategy Committee on 31 October 2006 BSI 2008ISBN 978 0 580 63408 6National forewordThis Briti
3、sh Standard is the UK implementation of ISO 6336-1:2006, incorporating corrigendum June 2008. It supersedes BS ISO 6336-1:1996 which is withdrawn.The start and finish of text introduced or altered by corrigendum is indicated in the text by tags. Text altered by ISO corrigendum June 2008 is indicated
4、 in the text by .The UK participation in its preparation was entrusted to Technical Committee MCE/5, Gears.A list of organizations represented on this committee can be obtained on request to its secretary.This publication does not purport to include all the necessary provisions of a contract. Users
5、are responsible for its correct application.Compliance with a British Standard cannot confer immunity from legal obligations.Amendments/corrigenda issued since publicationDate Comments30 September 2008 Implementation of ISO corrigendum June 2008Reference numberISO 6336-1:2006(E)INTERNATIONAL STANDAR
6、D ISO6336-1Second edition2006-09-01Calculation of load capacity of spur and helical gears Part 1: Basic principles, introduction and general influence factors Calcul de la capacit de charge des engrenages cylindriques dentures droite et hlicodale Partie 1: Principes de base, introduction et facteurs
7、 gnraux dinfluence BS ISO 6336-1:2006ii iiiContents Page Foreword vi Introduction vii 1 Scope . 1 2 Normative references . 2 3 Terms, definitions, symbols and abbreviated terms. 2 4 Basic principles 12 4.1 Application 12 4.1.1 Scuffing 12 4.1.2 Wear . 12 4.1.3 Micropitting . 12 4.1.4 Plastic yieldin
8、g 12 4.1.5 Particular categories 12 4.1.6 Specific applications 12 4.1.7 Safety factors 13 4.1.8 Testing . 15 4.1.9 Manufacturing tolerances 15 4.1.10 Implied accuracy. 15 4.1.11 Other considerations 15 4.1.12 Influence factors . 16 4.1.13 Numerical equations. 18 4.1.14 Succession of factors in cour
9、se of calculation . 18 4.1.15 Determination of allowable values of gear deviations 18 4.2 Tangential load, torque and power . 18 4.2.1 Nominal tangential load, nominal torque and nominal power . 18 4.2.2 Equivalent tangential load, equivalent torque and equivalent power. 19 4.2.3 Maximum tangential
10、load, maximum torque and maximum power. 19 5 Application factor KA19 5.1 Method A Factor KA-A. 20 5.2 Method B Factor KA-B. 20 6 Internal dynamic factor Kv. 20 6.1 Parameters affecting internal dynamic load and calculations. 20 6.1.1 Design 20 6.1.2 Manufacturing . 21 6.1.3 Transmission perturbance.
11、 21 6.1.4 Dynamic response 21 6.1.5 Resonance. 22 6.2 Principles and assumptions 22 6.3 Methods for determination of dynamic factor . 22 6.3.1 Method A Factor Kv-A. 22 6.3.2 Method B Factor Kv-B. 23 6.3.3 Method C Factor Kv-C. 23 6.4 Determination of dynamic factor using Method B: Kv-B. 24 6.4.1 Run
12、ning speed ranges . 24 6.4.2 Determination of resonance running speed (main resonance) of a gear pair 3)25 6.4.3 Dynamic factor in subcritical range (N u NS). 27 6.4.4 Dynamic factor in main resonance range (NS u 1,15) 30 BS ISO 6336-1:2006iv 6.4.5 Dynamic factor in supercritical range (N W 1,5) . 3
13、0 6.4.6 Dynamic factor in intermediate range (1,15 N 1,5). 30 6.4.7 Resonance speed determination for less common gear designs . 31 6.4.8 Calculation of reduced mass of gear pair with external teeth 33 6.5 Determination of dynamic factor using Method C: Kv-C34 6.5.1 Graphical values of dynamic facto
14、r using Method C 35 6.5.2 Determination by calculation of dynamic factor using Method C 39 7 Face load factors KHand KF. 39 7.1 Gear tooth load distribution. 39 7.2 General principles for determination of face load factors KHand KF40 7.2.1 Face load factor for contact stress KH40 7.2.2 Face load fac
15、tor for tooth root stress KF40 7.3 Methods for determination of face load factor Principles, assumptions . 40 7.3.1 Method A Factors KH-Aand KF-A41 7.3.2 Method B Factors KH-Band KF-B41 7.3.3 Method C Factors KH-Cand KF-C41 7.4 Determination of face load factor using Method B: KH-B41 7.4.1 Number of
16、 calculation points. 41 7.4.2 Definition of KH41 7.4.3 Stiffness and elastic deformations . 42 7.4.4 Static displacements 45 7.4.5 Assumptions 45 7.4.6 Computer program output . 45 7.5 Determination of face load factor using Method C: KH-C45 7.5.1 Effective equivalent misalignment Fy47 7.5.2 Running
17、-in allowance yand running-in factor . 47 7.5.3 Mesh misalignment, fma59 7.5.4 Component of mesh misalignment caused by case deformation, fca. 61 7.5.5 Component of mesh misalignment caused by shaft displacement, fbe62 7.6 Determination of face load factor for tooth root stress using Method B or C:
18、KF63 8 Transverse load factors KHand KF63 8.1 Transverse load distribution 63 8.2 Determination methods for transverse load factors Principles and assumptions 63 8.2.1 Method A Factors KH-Aand KF-A63 8.2.2 Method B Factors KH-Band KF-B64 8.3 Determination of transverse load factors using Method B KH
19、-Band KF-B64 8.3.1 Determination of transverse load factor by calculation . 64 8.3.2 Transverse load factors from graphs . 65 8.3.3 Limiting conditions for KH65 8.3.4 Limiting conditions for KF65 8.3.5 Running-in allowance y. 66 9 Tooth stiffness parameters c and c. 70 9.1 Stiffness influences 70 9.
20、2 Determination methods for tooth stiffness parameters Principles and assumptions 70 9.2.1 Method A Tooth stiffness parameters cAand c-A70 9.2.2 Method B Tooth stiffness parameters cBand c-B71 9.3 Determination of tooth stiffness parameters c and caccording to Method B 71 9.3.1 Single stiffness, c.
21、72 9.3.2 Mesh stiffness, c74 Annex A (normative) Additional methods for determination of fshand fma76 BS ISO 6336-1:2006vAnnex B (informative) Guide values for crowning and end relief of teeth of cylindrical gears . 79 Annex C (informative) Guide values for KH-Cfor crowned teeth of cylindrical gears
22、 . 82 Annex D (informative) Derivations and explanatory notes 85 Annex E (informative) Analytical determination of load distribution 89 Bibliography . 109 BS ISO 6336-1:2006vi Foreword ISO (the International Organization for Standardization) is a worldwide federation of national standards bodies (IS
23、O member bodies). The work of preparing International Standards is normally carried out through ISO technical committees. Each member body interested in a subject for which a technical committee has been established has the right to be represented on that committee. International organizations, gove
24、rnmental and non-governmental, in liaison with ISO, also take part in the work. ISO collaborates closely with the International Electrotechnical Commission (IEC) on all matters of electrotechnical standardization. International Standards are drafted in accordance with the rules given in the ISO/IEC
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