AGMA ISO 22849-A12-2012 Design Recommendations for Bevel Gears.pdf
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1、AGMA ISO 22849-A12Identical to ISO/TR 22849:2011AGMA Information SheetDesign Recommendations forBevel GearsAGMAISO22849-A12iiDesign Recommendations for Bevel GearsAGMA ISO 22849-A12Identical to ISO/TR 22849:2011CAUTIONNOTICE: AGMA technical publications are subject to constant improvement,revision o
2、r withdrawal as dictated by experience. Any person who refers to any AGMAtechnicalpublicationshouldbesurethatthepublicationisthelatestavailablefromtheAs-sociation on the subject matter.Tablesorotherself-supportingsectionsmaybereferenced. Citationsshouldread: SeeAGMA ISO 22849-A12, Design Recommendat
3、ions for Bevel Gears, published by theAmericanGearManufacturersAssociation,1001N.FairfaxStreet,Suite500,Alexandria,Virginia 22314, http:/www.agma.org.Approved May 7, 2012ABSTRACTThisinformationsheetdiscussestheapplicationofbevelandhypoidgearsusingthegeometryinANSI/AGMAISO 23509, the capacity as dete
4、rmined by ISO 10300 (all parts), or ANSI/AGMA 2003-C10 and AGMA932-A05,andthetolerancesinANSI/AGMAISO17485. Itprovidesadditional informationon theapplication,manufacturing,strengthandefficiencyofbevelgearsforconsiderationinthedesignstageofanewbevelgearset.Published byAmerican Gear Manufacturers Asso
5、ciation100 N. Fairfax Street, Suite 500, Alexandria, Virginia 22314Copyright 2012 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 permission of the publisher.
6、Printed in the United States of AmericaISBN: 978-1-61481-029-2AmericanGearManufacturersAssociationAGMA ISO 22849-A12AMERICAN GEAR MANUFACTURERS ASSOCIATIONiii AGMA 2012 All rights reservedContentsPageForeword vi.1 Scope 1.2 Symbols, descriptions and units 13 Application 2.3.1 Geometry 2.3.2 Rating 3
7、3.2.1 General 33.2.2 Bending strength 33.2.3 Pitting resistance 33.2.4 Other forms of bevel gear tooth deterioration 33.3 Materials 3.3.4 Gear tolerances 3.3.5 Gear noise 43.5.1 General 43.5.2 Tooth flank form corrections 4.3.5.3 Design contact ratio 43.5.4 Other noise consideration 6.4 Manufacturin
8、g consideration 7.4.1 Outline of production methods and their features face milling and face hobbing 74.2 Blank design and tolerances 84.2.1 General aspects 8.4.2.2 Clamping surface 84.2.3 Tooth backing 9.4.2.4 Load direction 9.4.2.5 Locating surface 9.4.2.6 Solid shanks 94.2.7 Flanged hub 104.2.8 S
9、plined bores 10.4.2.9 Ring-type designs 114.2.10 Dowel 124.2.11 Hub projections 12.4.2.12 Blank tolerances 13.4.2.13 Drawing specifications for blanks 164.3 Assembly 16.4.3.1 General 164.3.2 Correct assembly 164.3.3 Markings 16.4.3.4 Positioning bevel gears 18.4.3.5 Backlash measurement 18.4.3.6 Amo
10、unt of axial movement for a limited change in backlash 19.4.3.7 Endplay 204.4 Tooth contact pattern 20.4.4.1 General 204.4.2 Typical contact patterns 214.4.3 Need for position control 224.4.4 Deflection tests 224.4.5 Drawing specifications 225 Strength considerations 22AGMA ISO 22849-A12 AMERICAN GE
11、AR MANUFACTURERS ASSOCIATIONiv AGMA 2012 All rights reserved5.1 Effect of hypoid offset 225.2 Effect of cutter radius 22.5.3 Bevel gear mountings 235.4 Direction of forces 25.6 Efficiency considerations 25.6.1 Hypoid and bevel gear mesh efficiency 25.6.1.1 General 256.1.2 Gear efficiency 266.1.3 Eff
12、iciency of mesh 26.6.1.4 Profile sliding 266.1.5 Hypoid lengthwise sliding 27.6.1.6 Coefficient of friction 28.6.1.7 Churning efficiency 286.2 Lubrication 296.2.1 Principles for lubrication 296.2.2 Selection criteria of lubricants 29.6.2.3 Types of lubricants 30.6.2.4 Application of lubricant 31.Bib
13、liography 33.Figures1 Example of a gear pair finished by lapping process 52 Effect of profile crowning and flank twist on transmission error lengthwise crowning of 20 mm6.3 The effect of design contact ratio on transmission error 74 Recommended clamping surface of the blank 8.5 Tooth backing 96 Webl
14、ess mitre gear counterbored type 97 Suggested locating surfaces 10.8 Shank-type pinion with tapped hole 10.9 Shank-type pinion with external threads 10.10 Spline mounting 11.11 Typical wheels mounted on hubs 11.12 Methods of mounting gear 12.13 Example of required cutter clearance 1314 Method 1 for
15、specifying blank tolerances on bevel gears 14.15 Method 2 for specifying blank tolerances on bevel gears 15.16 Typical gear markings 16.17 Measurement of normal backlash 17.18 Bevel gear backlash Normal and transverse 19.19 Influence of axial movement on backlash 20.20 Typical non-loaded contact pat
16、terns 21.21 Calculated loaded contact pattern 22.22 Size of cutter radius 23.23 Direction of tooth bearing shift caused by misalignment 2324 Position of axes in bevel gearing 2425 Typical mounting arrangements 25.26 Typical gear tooth forces 26.AGMA ISO 22849-A12AMERICAN GEAR MANUFACTURERS ASSOCIATI
17、ONv AGMA 2012 All rights reservedTables1 Symbols, terms and definitions 1.2 Typical values of transmission error 4.3 Face angle and back angle distance tolerances 14.4 Suggested tolerances for bore or shank diameter 14.5 Suggested tolerances for blank dimensions 156 Suggested normal backlash toleran
18、ce at tightest point of mesh 197 Effect of cutter radius in the tooth bearing shift caused by misalignment 248 Recommended positional tolerances of axes 24.9 Typical oil jet location 32AGMA ISO 22849-A12 AMERICAN GEAR MANUFACTURERS ASSOCIATIONvi AGMA 2012 All rights reservedForewordTheforeword,footn
19、otesandannexes,ifany,inthisdocumentareprovidedforinformationalpurposesonlyandare not to be construed as a part of AGMA ISO 22849-A12, Design Recommendations for Bevel Gears.The U.S. delegation proposed development of a new standard to ISO Technical Committee 60 on bevel geargeometry and associated d
20、esign recommendations based on ANSI/AGMA 2005-D03, Design Manual forBevel Gears. It was decided to address this project through the preparation of 1) an International Standardfocusing strictly on bevel geometry (ISO 23509:2006, Bevel and hypoid gear geometry), and 2) acomplimentary ISO Technical Rep
21、ort (ISO/TR 22849:2011, Design recommendations for bevel gears)whichwould present other design issues to be considered.ISO 23509 was adopted as an American National Standard, ANSI/AGMA ISO 23509-A08, in 2008.Information Sheet AGMA ISO 22849-A12 represents an identical adoption of ISO/TR 22849:2011 w
22、ith thefollowing revisions/clarifications:- in 3.2.4, the term “case crushing” waschanged to the preferredterm “subcasefatigue” and“welding” tothepreferred term “scuffing”;- in 6.2.3.2.2, the numerator of equation (44) was revised to the correct value of 500;- recommendationtouseAGMAdocumentsforload
23、capacitycalculationsinadditiontoISO10300wasmade;- reference wasmade to those ISOstandardsand technical reportsthathavebeen adoptedbyAGMAusingtheir appropriate document numbers.ThefirstdraftofAGMAISO22849-A12wasmadeinMay,2011. ItwasapprovedbytheAGMAmembershiponMay 7, 2012.Suggestions for improvement
24、of this document will be welcome. They should be sent to the American GearManufacturers Association, 1001 N. Fairfax Street, Suite 500, Alexandria, Virginia 22314.AGMA ISO 22849-A12AMERICAN GEAR MANUFACTURERS ASSOCIATIONvii AGMA 2012 All rights reservedPERSONNEL of the AGMA Bevel Gearing CommitteeCh
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