SAE J 2264-2014 Chassis Dynamometer Simulation of Road Load Using Coastdown Techniques《使用滑行技术的道路负载的底盘测功机模拟》.pdf
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1、_ 6$(7HFKQLFDO6WDQGDUGV%RDUG5XOHVSURYLGHWKDW7KLVUHSRUWLVSXEOLVKHGE6$(WRDGYDQFHWKHVWDWHRIWHFKQLFDO 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 tKHUHIURPLVWKHVROHUHVSRQVL
2、ELOLWRIWKHXVHU 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 2014 SAE International All rights reserved. No part of this publication may be reproduced, st
3、ored 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 (outside USA) Fax: 724-776-079
4、0 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.org SAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/J2264_201401 SURFACE VEHICLE RECOMMENDED PRACTICE J2264 JAN2014 Issued 1995-04 Revised 2014-01 Superseding J2264
5、APR1995 Chassis Dynamometer Simulation of Road Load Using Coastdown Techniques RATIONALE This procedure has been revised to include a new fixed-run test option, provisions for four-wheel drive dynamometer and 20F testing, and updates to definitions and nomenclature aimed at harmonizing these quantit
6、ies across related SAE documents. FOREWORD Electric chassis roll dynamometers provide the means for rapid, accurate, automatic adjustment of dynamometer loading to simulate vehicle road load over the entire speed range through which the vehicle is tested. Precise calibration of chassis roll torque m
7、easurement and speed instrumentation, accurate measurement of base inertia, and controls employing valid algorithms have resulted in accurate dynamometer load coefficient measurements using coastdown techniques without requiring onerous computation and data manipulation by users. Variability of each
8、 dynamometer and between dynamometers is low, permitting load coefficients obtained on one dynamometer to be used on other similar dynamometers. To achieve this interchangeability of loading coefficients, operational factors are specified with the objective of keeping test variability at the low lev
9、els of the dynamometer. This procedure was originally developed in conjunction with the introduction of the 1.219 m (48 in) diameter single-roll electric dynamometer for vehicle emissions and fuel economy testing, however, the methodology is generic to any dynamometer capable of carrying out the roa
10、d load derivation described, regardless of roll size, geometry, or roll surface roughness and is intended to provide a standard of best practice for all vehicle testing requiring accurate road load simulation. SAE INTERNATIONAL J2264 Revised JAN2014 Page 2 of 22 TABLE OF CONTENTS 1. SCOPE 2 1.1 Purp
11、ose . 2 2. REFERENCES 3 2.1 Applicable Documents 3 2.2 Related Publications . 3 3. DEFINITIONS . 4 4. EQUIPMENT . 8 4.1 Dynamometer 8 4.2 Restraint System . 9 4.3 Air Circulation/Cooling . 9 5. COASTDOWN COMPUTATIONS 9 5.1 Integration for Analytically-Obtained Values of t . 10 5.2 Example Calculatio
12、n Sequence 10 6. ROAD LOAD DERIVATION PROCEDURE 13 6.1 Summary . 13 6.2 Recommended Pre-Test Calibration Check . 13 6.3 Vehicle Preparation . 13 6.4 Dynamometer Set-Up . 14 6.5 Vehicle Installation on Dynamometer . 14 6.6 Vehicle Preconditioning. 15 6.7 Road Load Derivation Runs 15 6.8 Iterative Pro
13、cedure 15 6.9 Fixed-Run Procedure 16 6.10 Dynamometer Calibration Verification Coastdown . 17 6.11 Special provisions for Testing at 20F (-7c) . 17 6.12 Road Load Derivation Report . 17 7. NOTES 18 7.1 Conversion Factors . 18 7.2 Marginal Indicia . 19 APPENDIX A SAMPLE REPORTS . 20 FIGURE 1 FLOW CHA
14、RT OF COASTDOWN CALCULATION AND ERROR CORRECTION SEQUENCE 12 FIGURE A1 ROAD LOAD DERIVATION DISPLAY 21 FIGURE A2 TYPICAL MEASURED-TARGET COASTDOWN REPORT . 22 1. SCOPE This procedure covers vehicle operation and electric dynamometer load coefficient adjustment to simulate track road load within dyna
15、mometer inertia and road load simulation capabilities. 1.1 Purpose To provide a uniform procedure for adjusting an electric chassis roll dynamometer to provide accurate simulation of the resistance which must be overcome by the vehicle powertrain to maintain steady speed on a flat road, as determine
16、d by track coastdown tests on that vehicle. SAE INTERNATIONAL J2264 Revised JAN2014 Page 3 of 22 2. REFERENCES 2.1 Applicable Documents The following publications form a part of this specification to the extent specified herein. Unless otherwise indicated, the latest issue of SAE publications shall
17、apply. 2.1.1 HWFET Publication Available from the Superintendent of Documents, U.S. Government Printing Office, Mail Stop: SSOP, Washington, DC 20402-9320. HWFET, Highway Fuel Economy Test, 40 CFR Part 600, Subpart B and Appendix I 2.1.2 Other Publications Dynamometer Performance Evaluation and Qual
18、ity Assurance Procedures (AMA) for a 48 inch Single Roll, Electric Light Duty Chassis Dynamometer 2.2 Related Publications The following publications are provided for information purposes only and are not a required part of this SAE Technical Report. 2.2.1 SAE Publications Available from SAE Interna
19、tional, 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 J1263 Road Load Measurement and Dynamometer Simulation Using Coastdown Techniques SAE Paper 780257 DeRaad, L., “The Influence of Road Surface Texture o
20、n Tire Rolling Resistance,“ SAE Technical Paper 780257, 1978, doi:10.4271/780257. SAE Paper 810166 Oswald, A. and Browne, L., “The Airflow Field Around An Operating Tire and Its Effect on Tire Power Loss,“ SAE Technical Paper 810166, 1981, doi:10.4271/810166. SAE Paper 900760 Metz, L., Akouris, C.,
21、Agney, C., and Clark, M., “Moments of Inertia of Mounted and Unmounted Passenger Car and Motorcycle Tires,“ SAE Technical Paper 900760, 1990, doi:10.4271/900760. SAE Paper 930391 DAngelo, S., Mears, W., and Brownell, C., “Large-Roll Chassis Dynamometer with AC Flux-Vector PEU and Friction-Compensate
22、d Bearings,“ SAE Technical Paper 930391, 1993, doi:10.4271/930391. SAE Paper 930392 Mears, W., DAngelo, S., and Paulsell, C., “Performance Tests of a Large-Roll Chassis Dynamometer with AC Flux-Vector PEU and Friction-Compensated Bearings,“ SAE Technical Paper 930392, 1993, doi:10.4271/930392. SAE P
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