AGMA 927-A01-2001 Load Distribution Factors - Analytical Methods for Cylindrical Gears《负载分布系数.圆柱齿轮用分析法》.pdf
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1、AGMA 927-AO1 AMERICAN GEAR MANUFACTURERS ASSOCIATION Load Distribution Factors = Analytical Methods for Cylindrical Gears AGMA INFORIMATION SHEET (This Information Sheet is NOT an AGMA Standard) Am er can Gear Manufacturers Association Load Distribution Factors - Analytical Methods for Cylindrical G
2、ears CAUTION NOTICE: AGMA technical publications are subject to constant improvement, revision or withdrawal as dictated by experience. Any person who refers to any AGMA technical publication should be sure that the publication is the latest available from the As- sociation on the subject matter. Fa
3、bles or other self-supporting sections may be quoted or extracted. Credit lines should read: Extracted from AGMA 927-AO1, Load Distribution Factors -Analytical Methods for Cylindrical Gears, with the permission of the publisher, the American Gear Manufacturers Association, 1500 King Street, Suite 20
4、1, Alexandria, Virginia 2231 4.1 AGMA 927-A01 Approved October 22, 2000 ABSTRACT This information sheet describes an analytical procedure for the calculation of the face load distribution. The iterative solution that is described is compatible with the definitions of the term face load distribution
5、(KH) of AGMAstandards and longitudinal load distribution (KH and KF) of the IS0 standards. The procedure is easily programmable and flow charts of the calculation scheme as well as examples from typical software are presented. Published by American Gear Manufacturers Association 1500 King Street, Su
6、ite 201, Alexandria, Virginia 22314 Copyright O 2000 by American Gear Manufacturers Association All rights reserved. No part of this publication may be reproduced in any form, in an electronic retrieval system or otherwise, without prior written permission of the publisher. Printed in the United Sta
7、tes of America ISBN: i -55589-779-7 ii AMERICAN GEAR MANUFACTURERS ASSOCIATION AGMA 927-AO1 Contents Page Foreword . iv 1 Scope . 1 2 References 1 3 4 5 6 8 Gapanalysis 15 Definitions and symbols 2 Iterative analytical method 3 Shaft bending deflections 9 7 Shaft torsional deflection 14 9 Load distr
8、ibution . 19 1 O Future considerations 21 Annexes A B Figures Coordinate system. sign convention. gearing forces and moments . 4 Flowcharts for load distribution factor . 22 Load distribution examples 26 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 Base tangent coordinate system for CW driven rotation fro
9、m reference end . 5 Base tangent coordinate system for CCW driven rotation from reference end 6 Hand of cut for gears and explanation of apex for bevel gears . 7 Gearing force sense of direction for positive value from equations 8 Example general case gear arrangement (base tangent coordinate system
10、) . 8 View A-A from figure 5 9 Example shaft . 11 Calculated shaft diagrams . 13 Torsional increments . 15 Shaftnumber3gap 17 Shaftnumber4gap 17 Total meshgap 18 Tooth section with spring constant Cy,. load L. and deflection cd . 19 Meshgapsection grid 20 Relative mesh gap . 18 Deflection sections .
11、 19 Tables 1 2 4 Symbols and definitions 2 Values for factors hand. apex. rotation. and drive 7 3 Calculation data and results . 10 Evaluation of mesh gap for mesh #3. pm 16 iii AGMA 927-AO1 AMERICAN GEAR MANUFACTURERS ASSOCIATION Foreword rhe foreword, footnotes and annexes, if any, in this documen
12、t are provided for informational purposes only and are not to be construed as a part of AGMA Information Sheet 927-AO1, Load Distribution Factors - Analytical Methods for Cylindrical Gears. This information sheet provides an analytical method to calculate a numeric value for the face load distributi
13、on factor for cylindrical gearing. This is a new document, which provides a description of the analytical procedures that are used in several software programs that have been developed by various gear manufacturing companies. The method provides a significant improvement from the procedures used to
14、define numeric values of face load distribution factor in current AGMA standards. Current AGMA standards utilize either an empirical procedure or a simplified closed form analytical calculation. The empirical procedure which is used in ANWAGMA 21 O1 -C95 only allows for a nominal assessment of the i
15、nfluence of many parameters which effect the numeric value of the face load distribution factor. The closed form analytic formulations which have been found in AGMA standards suffer from the limitation that the shape of the load distribution across the face width is limited to a linear form. The lim
16、itations of the previous AGMA procedures are overcome by the method defined in this information sheet. This method allows for including a sufficiently accurate representation of many of the parameters that influence the distribution of load along the face width of cylindrical gears. These parameters
17、 include the elastic effects due to deformations under load, and the inelastic effects of geometric errors as well as the tooth modifications which are typically utilized to offset the deleterious effects of the deformations and errors. The analytical method described in this information sheet is ba
18、sed on a”thin slice” model of a gear mesh. This model treats the distribution of load across the face width of the gear mesh as being independent of the any transverse effects. The method also represents all of the elastic effects of a set of meshing teeth (tooth bending, tooth shear, tooth rotation
19、, Hertzian deflections, etc.) by one constant, .e., mesh stiffness (Cy,). Despite these simplifying assumptions, this method provides numeric values of the face load distribution factor that are sufficiently accurate for industrial applications of gearing which fall within the limitations specified.
20、 The first draft of this information sheet was made in February, 1996. This version was approved by the AGMA membership on October 22,2000. Special mention must be made of the devotion of Louis Lloyd of Lufkin for his untiring efforts from the submittal of the original software code through the prod
21、ding for progress during the long process of writing this information sheet. Without his foresight and contributions this information sheet may not have been possible. Suggestions for improvement of this document will be welcome. They should be sent to the American Gear Manufacturers Association, 15
22、00 King Street, Suite 201, Alexandria, Virginia 2231 4. iv AMERICAN GEAR MANUFACTURERS ASSOCIATION AGMA 927-AO1 PERSONNEL of the AGMA Helical Rating Committee and Load Distribution SubCommittee Chairman: D. McCarthy . Dorris Company Vice Chairman: M. Antosiewicz The Falk Corporation SubCommittee Cha
23、irman: J. Lisiecki The Falk Corporation SUBCOMMITTEE ACTIVE MEMBERS K.E. Acheson . The Gear Works - Seattle W.A. Bradley Consultant M.F. Dalton . General Electric Company G.A. DeLange . Prager, Inc. O. LaBath The Cincinnati Gear Co. L. Lloyd Lufkin Industries, Inc. COMMITTEE ACTIVE MEMBERS K.E. Ache
24、son . The Gear Works-Seattle, Inc. J.B. Amendola . . MAAG Gear AG T.A. Beveridge . . Caterpillar, Inc. W.A. Bradley Consultant M.J. Broglie . Dudley Technical Group, Inc. A.B. Cardis . Mobil Technology Center M.F. Dalton . General Electric Company G.A. DeLange. Prager, Incorporated D.W. Dudley Consu
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