AGMA 915-3-A99-1999 Inspection Practices - Gear Blanks Shaft Center Distance and Parallelism《齿轮毛坯 轴中心距和平行距的检验规定》.pdf
《AGMA 915-3-A99-1999 Inspection Practices - Gear Blanks Shaft Center Distance and Parallelism《齿轮毛坯 轴中心距和平行距的检验规定》.pdf》由会员分享,可在线阅读,更多相关《AGMA 915-3-A99-1999 Inspection Practices - Gear Blanks Shaft Center Distance and Parallelism《齿轮毛坯 轴中心距和平行距的检验规定》.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、AGMA915-3-A99AGMA INFORMATION SHEET(This Information Sheet is NOT an AGMA Standard)AGMA 915- 3- A99ISO/TR 10064-3:1996 (MOD)AMERICAN GEAR MANUFACTURERS ASSOCIATIONInspection Practices - Gear Blanks, ShaftCenter Distance and ParallelismiiInspection Practices - Gear Blanks, Shaft Center Distance and P
2、arallelismAGMA 915-3-A99ISO/TR 10064-3:1996 (MOD)CAUTION 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
3、the As-sociation on the subject matter.Tables or other self-supporting sections may be quoted or extracted. Credit lines shouldread: Extracted from AGMA 915-3-A99, Inspection Practices - Gear Blanks, Shaft Cen-ter Distance and Parallelism, with the permission of the publisher, the American GearManuf
4、acturers Association, 1500 King Street, Suite 201, Alexandria, Virginia 22314.Approved May 20, 1999ABSTRACTThis information sheet provides the description of recommended numerical values relating to the inspection ofgear blanks, shaft center distance and parallelism of shaft axes.Published byAmerica
5、n Gear Manufacturers Association1500 King Street, Suite 201, Alexandria, Virginia 22314Copyright 1999 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 permissi
6、on of the publisher.Printed in the United States of AmericaISBN: 1-55589-738-XAmericanGearManufacturersAssociationAGMA 915- 3- A99AMERICAN GEAR MANUFACTURERS ASSOCIATIONiiiContentsPageForeword iv.1 Scope 1.2 References 13 Symbols and definitions 14 Accuracy of gear blanks 2.5 Center distance and par
7、allelism of axes 6Tables1 Symbols and terms 12 Form tolerances for datum and mounting surfaces 4.3 Tolerances on runout of mounting surfaces 5.Figures1 Datum axis defined by two “short” datum surfaces 3.2 Datum axis defined by one “long” datum surface 33 Datum axis defined by one cylindrical surface
8、 and one end-face 3.4 Internal ring gear datum axis defined by cylindrical surface and end-face 4.5 Center holes as manufacturing surfaces 46 High quality gear with reference bands 5.7 Shaft parallelism deviations 7.Bibliography 9.AGMA 915- 3- A99 AMERICAN GEAR MANUFACTURERS ASSOCIATIONivForewordThe
9、 foreword, footnotes and annexes, if any, in this document are provided forinformational purposes only and are not to be construed as a part of AGMA InformationSheet 915-3-A99, Inspection Practices - Gear Blanks, Shaft Center Distance andParallelism.In the course of revising ANSI/AGMA 2000-A88, Gear
10、 Classification and InspectionHandbook - Tolerances and Measuring Methods for Unassembled Spur and Helical Gears,the AGMA Inspection Handbook Committee agreed that the ISO information from ISO/TR10064-3:1996, relative to the inspection of gear blanks, shaft center distance andparallelism of axes sho
11、uld be published under separate cover as an AGMA InformationSheet.For the general replacement of ANSI/AGMA 2000-A88, a system of documents as listedbelow, together with this information sheet, has been established:- AGMA 915-1-AXX, Inspection Practices for Cylindrical Gears - TangentialMeasurements-
12、 AGMA 915-2-AXX, Inspection Practices for Cylindrical Gears - RadialMeasurements- AGMA 915-4-AXX, Inspection Practices - Recommendations Relative to SurfaceTexture- AGMA 2015-1-AXX, Accuracy Classification System for Cylindrical Gears -Tangential Measurements- AGMA 2015-2-AXX, Accuracy Classificatio
13、n System for Cylindrical Gears - RadialMeasurementsISO/TR 10064-3:1996 was prepared by ISO Technical Committee TC 60, Gears.AGMA 915-3-A99 is not identical to ISO/TR 10064-3:1996, Cylindrical gears - Code ofinspection practice - Part 3: Recommendations relative to gear blanks, shaft centredistance a
14、nd parallelism of axes. It was agreed to be sent directly to committee comment inMay of 1998, after project approval by the TDEC. The Committee, during commentresolution, made the following changes to the original ISO Technical Report:- Addition of reference to ISO 1101 in clause 4;- Changed the wor
15、ding of the first paragraph of 4.3;- Revised figure 4, reversing the datum and runout callouts;- Changed 4.11 and figure 5, replacing datum surfaces with reference bands.The Committee decided that these changes were sufficient enough to require an additionalcommittee comment in February, 1999.It was
16、 approved by the AGMA Technical Division Executive Committee on May 20, 1999.Suggestions for improvement of this standard will be welcome. They should be sent to theAmerican Gear Manufacturers Association, 1500 King Street, Suite 201, Alexandria,Virginia 22314.AGMA 915- 3- A99AMERICAN GEAR MANUFACTU
17、RERS ASSOCIATIONvPERSONNEL of the AGMA Inspection and Handbook CommitteeChairman Classification Section: E. Lawson Mahr CorporationChairman Measurement Section: R.E. Smith R. E. Smith these surfacesshould be defined to limits significantly tighterthan those of the individual gear teeth;- the relativ
18、e positions of the surfaces; ingeneral, the greater the distance spanned, inproportion to the reference diameter of the teeth,the more relaxed can be the tolerance.The accuracy of the surfaces must be specified onthe component drawings.AGMA 915- 3- A99 AMERICAN GEAR MANUFACTURERS ASSOCIATION4- B -fl
19、atness tol.- A -runout tol. Arunout tol. AMountingSurfaceMountingSurfaceFigure 4 - Internal ring gear datum axis definedby cylindrical surface and end- faceThe form tolerances on all datum surfaces shouldnot exceed the values specified in table 2. Thetolerance should be reduced to the minimum.4.5 Fo
20、rm tolerances of functional andmanufacturing mounting surfacesThe form tolerances of the functional mountingsurfaces should not exceed the values specified intable 2. When separate manufacturing mountingsurfaces are used, similar limits will need to beapplied.4.6 Runout tolerances of functional axis
21、This clause is not relevant if the functional mountingsurfaces have been chosen as the datum surfaces.When the datum axis does not coincide with thefunctional axis then the runout(s) of the functionalmounting surface(s) relative to the datum axis mustbe controlled on the drawing. The runout toleranc
22、esshould not exceed the values specified in table 3.runout tol. A-B runout tol.- A - - B -A-BFigure 5 - Center holes as manufacturing surfacesTable 2 - Form tolerances for datum and mounting surfacesTolerance featureAxis defined by Circularity Cylindricity FlatnessTwo “short” cylindrical orconical d
23、atum surfaces0.04 (L/b) For 0.1 Fpwhichever is leastOne long cylindrical orconical datum surface0.04(L/b) For 0.1 Fpwhichever is leastOne short cylindrical andone end-face0.06 Fp0.06 (Dd/b) FNOTE:The gear blank tolerances should be reduced to the minimum which can be economically manufactured.AGMA 9
24、15- 3- A99AMERICAN GEAR MANUFACTURERS ASSOCIATION5Table 3 - Tolerances on runout of mounting surfacesRunout (total indicated range)Axis defined by Radial AxialCylindrical or conical datum surface only 0.15 (L/b) For 0.3 Fp(whichever is greater)- -One cylindrical datum surface and one end datum face
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