ANSI ASME B5.48-1977 Ball Screws (Incorporates Errata March 1979)《滚珠丝杠》.pdf
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1、AMERICAN NATIONAL STANDARD Ball Screws ANSI B5.48 - 1977 - - . -. - REAFFIRMED 1994 FOR CURRENT COMMIlTEE PERSONNEL PLEASE SEE ASME MANUAL AS11 SECRETARIAT SOCIETY OF AUTOMOTIVE ENGINEERS SOCIETY OF MANUFACTURING ENGINEERS NATIONAL MACHINE TOOL BUILDERS ASSOCIATION THE AMERICAN SOCIETY OF MECHANICAL
2、 ENGINEERS PUBLISHED BY THE AMERICAN SOCIETY OF MECHANICAL ENGINEERS United Engineering Center 345 East 47th Street New York, N. Y. 1001 7 No part of this document may be reproduced in any form, in an electronic retrieval system or otherwise, without the prior written permission of the publisher. Co
3、pyright 0 1977 by THE AMERICAN SOCIETY OF MECHANICAL ENGINEERS All Rights Reserved Printed in U.S.A. ERRATA ANSI B5.48 - 1977 Ball Screws Page 13. Paragraph A1.2 Symbols, change 0 = helix angle, degrees to read 8 = lead angle, degrees. page 13. Paragraph A1.3 Axial Angle Deflection Equations change
4、0 = tan-1 nBCD 1 to read 0 =tan- - L nBCD Copyright 01979 by THE AMERICAN SOCIETY OF MECHANICAL ENGINEERS All Rights Reserved Printed in USA. 36800B I1 llll I 1111llll FOREWORD In order to obtain a consensus opinion relative to proposals for standardization of ball screw assemblies within the ISO/TC
5、39 Subcommittee Working Group 7, a number of users within the machine tool industry and manufacturers of ball screws were assembled. It was determined by this group that there was a need for such standardization in the United States and application was made to AN Standards Committee B5-Machine Tools
6、, for the organization of a technical committee for this work. Accordingly, TC43 was organized and a scope was approved by AN Standards Committee B5. The first meeting was held on July 22, 1971. The members of the committee represented manufacturers, users of ball screws, and others of general inter
7、est balanced according to ANSI requirements for such committees. This document was approved as an American National Standard on April 7, 1977. iii AMERICAN NATIONAL STANDARDS COMMITTEE B5 MACHINE TOOLS, COMPONENTS, ELEMENTS, PERFORMANCE AND EQUIPMENT (The following is the roster of the Committee at
8、the time of the approval of the Standard) OFFICERS W. L. McCann, Chairman E. A. Munrhauer, Jr., Vice-chairman (Group A) Paul C. Ackermann, Vice-chairman (Group CJ C. T. Blake, Vice-chairman (Group BJ Harold Cooper, Vice Chairman (Group DJ E. J. Loeffler, Secretary STANDARDS COMMITTEE AMERICAN SOCIET
9、Y OF MECHANICAL ENGINEERS, THE f. S. Blackall, 111. The Taft-Pierce Manufacturing Company, Woonsocket, Rhode Island C. T. Blake, The Warner , NSK Corporation, New York, New York David A. Galonska, Saginaw Steering Gear Division, General Motors Corporation, Saginaw, Michigan J. Robert Henstenburg, Th
10、e Bullard Company, Bridgeport, Connecticut Richard F. Jennings, Jones 7.8,7.9 and 7.10 12 7.3 Imperial (Inch) System Symbols 12 7.4 Basic Load Rating (1 000 000 Inches Rated Life) . 12 7.5 Basic Static Thrust Capacity (Imperial) 12 7.7 SI Symbols 12 7.8 Basic Load Rating (25 400 Meters Rated Life) .
11、 12 7.9 Basic Static Thrust Capacity (Metric) . 12 7.10 Load Rating at Other Than 25 400 Meters of Travel . 12 7.6 Load Rating at Other Than One Million Inches of Travel 12 7.1 1 The Equivalent Load for Ball Bearing Screw Assemblies . 12 TABLES Table I Class and Deviation 3 Table I (a) Preferred Lea
12、d Error Measurement Interval-Inches . 3 Table I (b) Preferred Lead Error Measurement Interval-SI (Metric) 3 Table I1 Thread Length vs . “T” Factor for Classes 1. 2.4. and 5 4 Table 111 Full Indicator Movement. Classes 1 through 7 6 Table IV Diameter and Lead Combinations-Dimensions in Inches . 7 Tab
13、le V Diameter and Lead Combinations-Dimensions in Millimeters 7 FIGURES 1 Acceptance Template Construction 5 2 Ball Screw Specification Sheet . 8 3 Drawing Format . 10 3A Drawing Format . 11 vii APPENDICES AppendixAl 13 Al.3 Axial Deflection Equations . 13 A1.4 Approximate Deflection 14 Al.5 Drag To
14、rque (Maximum) 14 ChartAI 15 AppendixA2 16 Use-Classes 3,6,7, and 8 . 16 Fig . A2 Maximum Linear Deviation-Classes 2 and 5 17 Fig . A3 Maximum Permissible Lead Error-Classes 1 and 4 17 Al.l General 13 A1.2 Symbols . 13 . AI . 6 Length vs . Pitch Diameter Relation 14 Fig . A1 Maximum Rate Error and A
15、cceptance Template viii ANSI 65.48-1977 AMERICAN NATIONAL STANDARD BALL SCREWS 1.0 SCOPE 1.1 This standard covers definitions, classes of ball screws, recommended combinations of screw diame- ters and leads, recommended drawing format, and per- formance characteristics of ball screw and nut assem- b
16、lies as applied to machine tools. 1.2 The values stated in U.S. customary units are to be regarded as the standard. Metric values are con- verted from the customary values per recommenda- tions of “ASME Guide SI-1, ASME Orientation and Guide for Use of SI (Metric) Units”. 2.0 DEFINITIONS 2.1 Actual
17、Linear Deviation. The lead error rate, used as a reference line, for a ball screw assembly is determined by connecting the beginning and end points of the measured lead error. Maximum linear Meosured lead error Specified lead Actual linear deviation -. 1. Maximum linear3- devlation . 2.2 Backdriving
18、. Ability of screw or nut to rotate when thrust load is applied to the other member of the assembly. 2.3 Backlash. Axial free motion between the nut and screw. 2.4 Ball Nut. The member, containing the outer helical ball track of a ball screw assembly. 2.5 Ball Screw. The shaft member containing the
19、inner helical ball track, of a ball screw assembly. 2.6 Ball Screw Assembly. A device consisting of ball nut, ball screw and balls. 2.7 Ball Track. Specially designed helical groove in a ball nut or ball screw which transmits the load reac- tion between the ball nut or ball screw and the balls. 2.8
20、Basic Load Rating. That constant axial load which a group of apparently identical ball screw assemblies can endure for a rated life of one million inches (25 400 m) of travel. 2.9 Basic Static Thrust Capacity. The static thrust load, which will produce a permanent ball track defor- mation of 0.0001
21、times the ball diameter. 2.10 Circuit. A continuous closed path of recirculat- ing balls. 2.11 Column Strength. Maximum compressive axial load that can be applied to a screw without resulting in permanent structural deformation. 2.12 Conformity Ratio. Ratio of the ball track radius to the ball diame
22、ter. 2.13 Contact Angle. Nominal angle between a plane perpendicular to the screw axis, and a line drawn be- tween the theoretical points of tangency between a ball and the ball tracks and projected on a plane pass- ing through the screw axis and the center of the ball. 2.14 Critical Speed. Rotation
23、al speed, of nut or screw, that produces resonant vibration of the ball screw assembly. 2.15 Drag Torque. The torque required to rotate the nut relative to the screw in the absence of an external load. 2.16 End Seals. Closure element(s) affixed to the nut and in slideable contact with the screw in a
24、 man- ner which will inhibit foreign objects from entering the ball nut assembly and/or provide retention of the lubricant. 2.17 Equivalent Load. Mean load that will result in same life as a combination of varying loads. 2.18 Lead. Axial distance screw or nut travels in one revolution. 2.19 Lead Err
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