SAE J 2731-2012 Low Speed Enveloping Test with Perpendicular and Inclined Cleats《带有垂直和倾斜防滑钉的低速包络测试》.pdf
《SAE J 2731-2012 Low Speed Enveloping Test with Perpendicular and Inclined Cleats《带有垂直和倾斜防滑钉的低速包络测试》.pdf》由会员分享,可在线阅读,更多相关《SAE J 2731-2012 Low Speed Enveloping Test with Perpendicular and Inclined Cleats《带有垂直和倾斜防滑钉的低速包络测试》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、_SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising theref
2、rom, is the sole responsibility of the user.” SAE reviews each technical report at least every five years at which time it may be revised, reaffirmed, stabilized, or cancelled. SAE invites your written comments and suggestions.Copyright 2012 SAE International All rights reserved. No part of this pub
3、lication may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE. TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada) Tel: +1 724-776-4970
4、(outside USA) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.orgSAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/J2731_201205SURFACEVEHICLERECOMMENDEDPRACTICEJ2731 MAY2012 Issued 2006-11Revised 201
5、2-05Superseding J2731 NOV2006 Low Speed Enveloping Test with Perpendicular and Inclined Cleats RATIONALEJ2731 is being revised to correct editorial changes in paragraph 10.3 and 10.4.2. 1. SCOPE This SAE Recommended Practice describes a test method for measuring the forces and moments generated at a
6、 spindle when a tire rolls over a rectangular obstacle, cleat, at very low speed. The cleat used in a particular test condition is configured with its crest either perpendicular, 90, to the path of the tire or optionally with its crest inclined at an angle tothe path of the tire. The carriage to whi
7、ch the spindle is attached is rigidly constrained in position during each test condition so as to provide a good approximation to fixed loaded radius operation. The method discussed in this document provides cleat envelopment force and moment and tire angular position histories as functions of dista
8、nce traveled. These histories are essentially free from variations due to tire non-uniformities. The method applies to any size tire so long as the equipment is properly scaled to conduct the measurements for the intended test tire. The data are suitable for use in determining parameters for road lo
9、ad models and for comparative evaluations of the measured properties in research and development.NOTE: Herein, road load models are models for predicting forces applied to the vehicle spindles during operation over irregular surfaces, paved or otherwise. Within the context of this document, forces a
10、pplied to the road or terrain surface are not considered. 2. REFERENCES 2.1 Applicable Publications The following publications form part of the specification to the extent specified herein. Unless otherwise indicated the latest revisions of all publications shall apply. SAE J2731 Revised MAY2012 Pag
11、e 2 of 12 2.1.1 SAE Publications Available from SAE, 400 Commonwealth Drive, Warrendale, PA 15096-0001, Tel: 877-606-7323 (inside USA and Canada) or 724-776-4970 (outside USA), www.sae.org.SAE J2047 Tire Performance Technology SAE J2429 Free-Rolling Cornering Test for Truck and Bus Tires SAE J2710 M
12、odal Testing and Identification of Lower Order Tire Natural Frequencies of Radial Tires SAE J2730 Dynamic Cleat Test with Perpendicular and Inclined Cleats SAE 770870 The Effect of Tire Break-in on Force and Moment Properties, K. D. Marshall, R. L. Phelps, M. G. Pottinger, and W. Pelz, 1977 SAE 8100
13、66 The Effect of Aging on Force and Moment Properties of Radial Tires, M. G. Pottinger and K. D. Marshall, 19812.1.2 Rubber Manufacturers Association Publication Available from Rubber Manufacturers Association, 1400 K Street, NW, Suite 900, Washington, DC 20005, Tel: 202-682-4800, www.rma.org.OSHA S
14、tandard 1910.177 Servicing Multi-piece and Single Piece Rim Wheels (Available in wall chart form as #TTMP7/95)2.1.3 ISO Publication Available from ANSI, 25 West 43rd Street, New York, NY 10036-8002, Tel: 212-642-4900, www.ansi.org.ISO Standard 17025 General Requirements for the Competence of Testing
15、 and Calibration Laboratories3. DEFINITIONS The definitions that follow are of special meaning in this document and are either not contained in other Recommended Practices or are worded somewhat differently in this practice. 3.1 The Parallel Axis Tire Coordinate System This system is defined in SAE
16、J2710 and extended in SAE J2730 to allow tire rotation. For axes definitions and associated geometry, please see SAE J2730.3.2 The Tire Forces and Moments This set of spindle centered forces and moments is fully defined in SAE J2730.3.3 Test A Test is execution of the procedure described in this doc
17、ument one time on one tire at a single set of conditions. SAE J2731 Revised MAY2012 Page 3 of 12 3.4 Test Program A Test Program is a designed experiment involving a set of the tests described in this practice.14. NOMENCLATURE Table 1 lists the symbols used in this document. For further information
18、on items not in Section 4 of this practice please see SAE J2047. TABLE 1 - SYMBOLS DEFINED Symbol Defined Term D Distance Traveled FX”Parallel System Longitudinal Force FY”Parallel System Lateral Force FZ”Parallel System Normal Force Angular Displacement of Tire MX”Parallel System Overturning Moment
19、 MZ”Parallel System Aligning Moment RlTire Loaded Radius RlmaxMaximum RlExpected During Test Machine Use V Test Velocity 5. LABORATORY QUALITY SYSTEM REQUIREMENT The laboratory performing the procedures specified in this document shall have a quality system either conforming to ISO 17025 or which ca
20、n be shown to be functionally equivalent to ISO 17025. The elements of such a system are assumed below and are not, therefore, specifically called out within this practice. 6. APPARATUS The required apparatus consists of a test machine with a test surface (round or flat bed) capable of rolling test
21、tires over at least a quarter revolution prior to cleat envelopment, as defined in the test conditions, Section 10.4. It is preferable thatthe apparatus allow at least a full tire revolution before cleat envelopment starts. This would allow the relaxation phenomena to become complete.The test surfac
22、e shall allow mounting of rectangular cleats, one at a time, as specified in this practice. The machine shall have an instrumented spindle capable of measuring three forces (FX”, FY”, and FZ”) and two moments (MX”and MZ”)developed during tire envelopment of the cleat. Additionally, the relative disp
23、lacement of the spindle with respect to the test surface in the X”-Axis direction, D, and the tire angular displacement, , about the spindle shall be measured during envelopment using absolute encoders. The speed of travel during envelopment does not have to be constant due to the angular displaceme
24、nt measurements that are taken. Figure 1 is a schematic of both common machine types: a round test surface (drum) and a plank. Appropriate data acquisition equipment is considered to be part of the apparatus. The space housing the loading machine is also considered to be part of the apparatus.1There
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