ANSI AGMA 2001-D-2004 Fundamental Rating Factors and Calculation Methods for Spur and Helical Gear Teeth《渐开线正齿轮齿和斜齿轮螺旋齿的基本额定因子和计算方法》.pdf
《ANSI AGMA 2001-D-2004 Fundamental Rating Factors and Calculation Methods for Spur and Helical Gear Teeth《渐开线正齿轮齿和斜齿轮螺旋齿的基本额定因子和计算方法》.pdf》由会员分享,可在线阅读,更多相关《ANSI AGMA 2001-D-2004 Fundamental Rating Factors and Calculation Methods for Spur and Helical Gear Teeth《渐开线正齿轮齿和斜齿轮螺旋齿的基本额定因子和计算方法》.pdf(66页珍藏版)》请在麦多课文档分享上搜索。
1、ANSI/AGMA2001-D04ANSI/AGMA 2001-D04(Revision ofANSI/AGMA 2001-C95)AMERICAN NATIONAL STANDARDFundamental Rating Factors andCalculation Methods for Involute Spur andHelical Gear TeethCopyright American Gear Manufacturers Association Provided by IHS under license with AGMA Not for ResaleNo reproduction
2、 or networking permitted without license from IHS-,-,-iiFundamental Rating Factors and Calculation Methods for Involute Spur andHelical Gear TeethANSI/AGMA 2001-D04Revision of ANSI/AGMA 2001-C95Approval of an American National Standard requires verification by ANSI that the require-ments for due pro
3、cess, consensus, and other criteria for approval have been met by thestandards developer.Consensus is established when, in the judgment of the ANSI Board of Standards Review,substantial agreement has been reached by directly and materially affected interests.Substantial agreement means much more tha
4、n a simple majority, but not necessarily una-nimity. Consensus requires that all views and objections be considered, and that aconcerted effort be made toward their resolution.The use of American National Standards is completely voluntary; their existence does notin any respect preclude anyone, whet
5、her he has approved the standards or not, frommanufacturing, marketing, purchasing, or using products, processes, or procedures notconforming to the standards.The American National Standards Institute does not develop standards and will in nocircumstances give an interpretation of any American Natio
6、nal Standard. Moreover, noperson shall have the right or authority to issue an interpretation of an American NationalStandard in the name of the American National Standards Institute. Requests for interpre-tation of this standard should be addressed to the American Gear ManufacturersAssociation.CAUT
7、ION NOTICE: AGMA technical publications are subject to constant improvement,revision, or withdrawal as dictated by experience. Any person who refers to any AGMAtechnical publication should be sure that the publication is the latest available from theAssociation on the subject matter.Tables or other
8、self-supporting sections may be referenced. Citations should read: SeeANSI/AGMA 2001-D04, Fundamental Rating Factors and Calculation Methods for Invo-lute Spur and Helical Gear Teeth, published by the American Gear Manufacturers Asso-ciation, 500 Montgomery Street, Suite 350, Alexandria, Virginia 22
9、314,http:/www.agma.org.Approved December 28, 2004ABSTRACTThis standard specifies a method for rating the pitting resistance and bending strength of spur and helical invo-lute gear pairs. A detailed discussion of factors influencing gear survival and calculation methods are provided.Published byAmeri
10、can Gear Manufacturers Association500 Montgomery Street, Suite 350, Alexandria, Virginia 22314Copyright 2004 by American Gear Manufacturers AssociationAll rights reserved.No part of this publication may be reproduced in any form, in an electronicretrieval system or otherwise, without prior written p
11、ermission of the publisher.Printed in the United States of AmericaISBN: 1-55589-839-4AmericanNationalStandardCopyright American Gear Manufacturers Association Provided by IHS under license with AGMA Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-ANSI/AGMA 2001-D04
12、AMERICAN NATIONAL STANDARDiii AGMA 2004 - All rights reservedContentsPageForeword v.1 Scope 1.2 Normative references, definitions and symbols 23 Application 2.4 Criteria for tooth capacity 75 Fundamental rating formulas 9.6 Geometry factors, I and J 11.7 Transmitted tangential load, Wt128 Dynamic fa
13、ctor, Kv12.9 Overload factor, Ko15.10 Service factor 15.11 Safety factors, SHand SF1612 Elastic coefficient, Cp16.13 Surface condition factor, Cf1714 Hardness ratio factor, CH1715 Load distribution factor, Km1716 Allowable stress numbers, sacand sat23.17 Stress cycle factors, ZNand YN3618 Reliabilit
14、y factor, KR3819 Temperature factor, KT3820 Size factor, Ks38.Bibliography 56.AnnexesA Method for determination of dynamic factor with AGMA 2000-A88 39B Rim thickness factor, KB41C Application analysis 43D Discussion of the analytical face or longitudinal load distribution factor 46E Gear material f
15、atigue life 49F Controlling section size considerations for through hardened gearing 54.Figures1 Dynamic factor, Kv14.2 Hardness ratio factor, CH(through hardened) 183 Hardness ratio factor, CH(surface hardened pinions) 18.4 Instantaneous contact lines in the plane of action 195 Pinion proportion fa
16、ctor, Cpf21.6 Evaluation of S and S1217 Mesh alignment factor, Cma22.8 Allowable contact stress number for through hardened steel gears, sac249 Allowable bending stress number for through hardened steel gears, sat2510 Allowable bending stress numbers for nitrided through hardened steel gears(i.e., A
17、ISI 4140, AISI 4340), sat25.11 Allowable bending stress numbers for nitriding steel gears, sat26.12 Variations in hardening pattern obtainable on gear teeth with flame orinduction hardening 3213 Minimum effective case depth for carburized gears, hemin33.14 Core hardness coefficient, Uc3415 Minimum t
18、otal case depth for nitrided gears, hcmin34.16 Allowable yield strength number for steel gears, say35.Copyright American Gear Manufacturers Association Provided by IHS under license with AGMA Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-ANSI/AGMA 2001-D04 AMERIC
19、AN NATIONAL STANDARDiv AGMA 2004 - All rights reserved17 Pitting resistance stress cycle factor, ZN37.18 Bending strength stress cycle factor, YN37.Tables1 Symbols used in gear rating equations 3.2 Empirical constants; A, B, and C 22.3 Allowable contact stress number, sac, for steel gears 234 Allowa
20、ble bending stress number, sat, for steel gears 24.5 Allowable contact stress number, sac, for iron and bronze gears 266 Allowable bending stress number, sat, for iron and bronze gears 277 Major metallurgical factors affecting the allowable contact stress number,sac, and allowable bending stress num
21、ber, sat, of through hardened steelgears 278 Major metallurgical factors affecting the allowable contact stress number,sac, and allowable bending stress number, sat, of flame or induction hardenedsteel gears 289 Major metallurgical factors affecting the allowable contact stress number,sac, and allow
22、able bending stress number, sat, of carburized and hardenedsteel gears 2910 Major metallurgical factors affecting the allowable contact stress number,sac, and allowable bending stress number, sat, of nitrided steel gears 3111 Reliability factors, KR38.Copyright American Gear Manufacturers Associatio
23、n Provided by IHS under license with AGMA Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-ANSI/AGMA 2001-D04AMERICAN NATIONAL STANDARDv AGMA 2004 - All rights reservedForewordThe foreword, footnotes and annexes, if any, in this document are provided forinformationa
24、l purposes only and are not to be construed as a part of ANSI/AGMA2001-D04, Fundamental Rating Factors and Calculation Methods for Involute Spur andHelical Gear Teeth.This standard presents general formulas for rating the pitting resistance and bendingstrength of spur and helical involute gear teeth
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