ANSI AGMA 2011-B14-2014 Cylindrical Wormgearing Tolerance and Inspection Methods.pdf
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1、ANSI/AGMA2011-B14 ANSI/AGMA 2011-B14 (Revision of ANSI/AGMA 2011-A98) American National Standard Cylindrical Wormgearing Tolerance and Inspection Methods AMERICAN NATIONAL STANDARD ANSI/AGMA 2011-B14 AGMA 2014 All rights reserved ii Cylindrical Wormgearing Tolerance and Inspection Methods ANSI/AGMA
2、2011-B14 Revision of ANSI/AGMA 2011-A98 Approval of an American National Standard requires verification by ANSI that the requirements for due process, consensus and other criteria for approval have been met by the standards developer. Consensus is established when, in the judgment of the ANSI Board
3、of Standards Review, substantial agreement has been reached by directly and materially affected interests. Substantial agreement means much more than a simple majority, but not necessarily unanimity. Consensus requires that all views and objections be considered, and that a concerted effort be made
4、toward their resolution. The use of American National Standards is completely voluntary; their existence does not in any respect preclude anyone, whether he has approved the standards or not, from manufacturing, marketing, purchasing or using products, processes or procedures not conforming to the s
5、tandards. The American National Standards Institute does not develop standards and will in no circumstances give an interpretation of any American National Standard. Moreover, no person shall have the right or authority to issue an interpretation of an American National Standard in the name of the A
6、merican National Standards Institute. Requests for interpretation of this standard should be addressed to the American Gear Manufacturers Association. CAUTION NOTICE: AGMA technical publications are subject to constant improvement, revision or withdrawal as dictated by experience. Any person who ref
7、ers to any AGMA Technical Publication should be sure that the publication is the latest available from the Association on the subject matter. Tables or other self-supporting sections may be referenced. Citations should read: See ANSI/AGMA 2011-B14, Cylindrical Wormgearing Tolerance and Inspection Me
8、thods, published by the American Gear Manufacturers Association, 1001 N. Fairfax Street, Suite 500, Alexandria, Virginia 22314, http:/www.agma.org. Approved October 3, 2014 ABSTRACT This standard describes and defines variations that may occur in unassembled wormgearing. It displays measuring method
9、s and practices, giving suitable warnings if a preferred probe cannot be used. The applicability of single or double flank composite testing is discussed, using a reference gear. Tooth thickness measurement is shown using direct measurement as well as the use of measurements over wires or pins. Equa
10、tions for the maximum variations are given for the stated ranges, as a function of size, pitch and tolerance grade. Published by American Gear Manufacturers Association 1001 N. Fairfax Street, Suite 500, Alexandria, Virginia 22314 Copyright 2014 by American Gear Manufacturers Association All rights
11、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 States of America ISBN: 978-1-61481-090-2 American National Standard AMERICAN NATIONAL STANDARD ANSI/AGMA 2011
12、-B14 AGMA 2014 All rights reserved iii Contents Foreword . v 1 Scope . 1 1.1 Tolerance equations and tables 1 1.2 Measuring methods and practices 1 1.3 Exceptions . 1 2 Symbols, terms and definitions 1 2.1 Symbols . 1 2.2 Definition of terms . 1 3 Manufacturing and purchasing considerations 5 3.1 Ma
13、nufacturing certification 5 3.2 Process control 6 3.3 Inspection methods . 6 3.4 Additional considerations 6 3.4.1 Backlash allowance . 6 3.4.2 Material furnished by the purchaser 7 3.4.3 Matching gears as sets . 7 3.4.4 Reference gears for composite measurement 7 3.4.5 Contact pattern 7 3.4.6 Repla
14、cement gearing 7 3.5 Acceptance criteria 7 3.6 Evaluation of tolerance grade . 7 4 Measuring methods and practices . 7 4.1 Worm thread radial runout, VrW. 7 4.1.1 Causes of worm thread radial runout, VrW. 8 4.1.2 Alternative method of determining worm thread runout, VrW. 8 4.2 Worm pitch variation,
15、VpW8 4.2.1 Worm pitch variation, VpW- method A (recommended for 2 to 4 threaded worms only) 8 4.2.2 Worm pitch variation, VpW- method B (recommended for 2 to 20 threaded worms) 9 4.2.3 Causes of worm pitch variations, VpW. 10 4.2.4 Worm accumulative pitch variation, VapW10 4.3 Worm profile variation
16、, VW10 4.4 Worm lead variation, VlW. 12 4.5 Worm lead form variation, VlfW12 4.6 Wormgear tooth runout, VrG12 4.6.1 Form of axial runout 12 4.6.2 Form of radial runout . 12 4.6.3 Runout measuring methods 13 4.6.4 Cause of wormgear tooth runout, VrG13 4.6.5 Alternative methods of determining wormgear
17、 tooth runout, VrG13 4.7 Wormgear pitch variation, VpG, and accumulated pitch variation (total index variation), VapG. 13 4.7.1 Spacing . 13 4.7.2 Reference axis 14 4.7.3 Reference axial surfaces . 14 4.7.4 Reference identification of tooth data . 14 4.7.5 Location of probe or probes 14 4.7.6 Number
18、 of measurements . 14 4.7.7 Basic devices for wormgear pitch and accumulated pitch variation measurement 15 4.7.8 Use and interpretation of the two probe device 15 4.7.9 Use and interpretation of the single probe device . 16 4.7.10 Total accumulated pitch variation within a sector of k pitches, Vapk
19、G(total index variation within a sector of k pitches) 17 4.7.11 Causes of wormgear pitch variation, VpG17 AMERICAN NATIONAL STANDARD ANSI/AGMA 2011-B14 AGMA 2014 All rights reserved iv 4.8 Wormgear profile variation, VG. 18 4.9 Master worms 18 4.10 Double flank composite . 18 4.10.1 Applicability of
20、 double flank composite inspections 18 4.10.2 Double flank testing procedures 19 4.11 Single flank composite 19 4.11.1 Applicability of single flank composite inspections 19 4.11.2 Single flank testing procedures . 19 4.12 Worm thread thickness measurement 20 4.12.1 Gear tooth caliper 20 4.12.2 Meas
21、uring over pins 21 5 Equations for worm and wormgear tolerances 22 5.1 Worm runout tolerance 22 5.2 Worm profile variation tolerance . 22 5.3 Worm pitch variation tolerance 22 5.4 Worm total accumulated pitch variation tolerance 23 5.5 Worm lead variation tolerance 23 5.6 Worm lead form tolerance .
22、23 5.7 Gear runout tolerance . 23 5.8 Gear pitch variation tolerance . 23 5.9 Gear total accumulated pitch tolerance 23 Annexes Annex A (informative) Inspection tolerance tables . 24 Annex B Bibliography 45 Tables Table 1 - Symbols used 2 Figures Figure 1 - Functional part of the profile - cutoff po
23、ints, drop-off region . 4 Figure 2 - Lead and lead form variation 4 Figure 3 - Worm thread runout inspection, VrW. 8 Figure 4 - Worm pitch variation inspection, VpW- method A . 9 Figure 5 - Worm pitch variation inspection, VpW- method B . 10 Figure 6 - Worm thread profile inspection, VW. 11 Figure 7
24、 - Worm thread profile tolerance band, VTW11 Figure 8 - Worm thread lead inspection, VlW. 12 Figure 9 - Wormgear tooth runout, VrG13 Figure 10 - Location of probe - wormgear pitch variation, VpG14 Figure 11 - Two probe device . 15 Figure 12 - Schematic of single probe device . 15 Figure 13 - Relatio
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