SAE J 2684-2011 FMVSS 105 Inertia Brake Dynamometer Test Procedure for vehicles above 4 540 kg GVWR《总重4540 kg以上车辆的FMVSS 1-5惯性制动功率机试验程序》.pdf
《SAE J 2684-2011 FMVSS 105 Inertia Brake Dynamometer Test Procedure for vehicles above 4 540 kg GVWR《总重4540 kg以上车辆的FMVSS 1-5惯性制动功率机试验程序》.pdf》由会员分享,可在线阅读,更多相关《SAE J 2684-2011 FMVSS 105 Inertia Brake Dynamometer Test Procedure for vehicles above 4 540 kg GVWR《总重4540 kg以上车辆的FMVSS 1-5惯性制动功率机试验程序》.pdf(19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 2011 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/J2684_201111SURFACEVEHICLERECOMMENDEDPRACTICEJ2684 NOV2011 Issued 2011-11FMVSS 105 I
5、nertia Brake Dynamometer Test Procedure for vehicles above 4 540 kg GVWR RATIONALEVehicle and braking systems development is fast-paced, and involves a global supplier base. This Recommended Practice provides an inertia-dynamometer test procedure that is repeatable and cost-effective. It evaluates t
6、he performance of the brake corner and its components (including friction material) by following the test procedure and sequence as indicated in the Federal Motor Vehicle Safety Standard (FMVSS) 105. Data from this Recommended Practice may be combined with other brake system and vehicle characterist
7、ics to predict vehicle performance. Since the first release of the FMVSS 105, there have been numerous inertia-dynamometer test protocols developed and used by the industry with different approaches and levels of detail. The SAE Truck and Bus Hydraulic Brake Committee considers laboratory test proce
8、dures useful in supporting harmonization to improve the overall performance and safety of motor vehicle braking systems.TABLE OF CONTENTS 1. SCOPE 22. REFERENCES 23. DEFINITIONS . 34. TEST CYCLES 75. TEST EQUIPMENT . 86. TEST CONDITIONS . 97. TEST PARTS PREPARATION AND TEST SETUP . 128. TEST PROCEDU
9、RES 129. TEST REPORT . 1710. NOTES 18APPENDIX A EXPLANATORY NOTES 19FIGURE 1 TYPICAL BRAKE APPLICATION TIME STAMPS . 7FIGURE 2 COOLING AIR FLOW DIRECTION RELATIVE TO CALIPER POSITION . 9FIGURE 3 PLUG-TYPE THERMOCOUPLE 9FIGURE 4 BRAKE PAD THERMOCOUPLE INSTALLATION . 10FIGURE 5 BRAKE SHOE THERMOCOUPLE
10、 INSTALLATION 10FIGURE 6 BRAKE SHOE AND BRAKE DRUM THERMOCOUPLE AXIAL LOCATION 10FIGURE 7 BRAKE DISC THERMOCOUPLE INSTALLATION 11TABLE 1 DEVELOPMENT TEST SEQUENCE . 14TABLE 2 FMVSS TEST SEQUENCE 16SAE J2684 Issued NOV2011 Page 2 of 19 1. SCOPE This Recommended Practice is derived from the FMVSS 105
11、vehicle test and applies to two-axle multipurpose passenger vehicles, trucks and buses with a GVWR above 4 540 kg (10 000 lbs) equipped with hydraulic service brakes. There are two main test sequences: Development Test Sequence for generic test conditions when not all information is available or whe
12、n an assessment of brake output at different inputs are required, and FMVSS Test Sequence when vehicle parameters for brake pressure as a function of brake pedal input force and vehicle-specific loading and brake distribution are available. The test sequences are derived from the Federal Motor Vehic
13、le Safety Standard 105 (and 121 for optional sections) as single-ended inertia-dynamometer test procedures when using the appropriate brake hardware and test parameters. This recommended practice provides Original Equipment Manufacturers (OEMs), brake and component manufacturers, as well as aftermar
14、ket suppliers, results related to brake output, friction material effectiveness, and corner performance in a laboratory-controlled test environment.The test sequences include different dynamic conditions (braking speeds, temperature, and braking history as outlined in the FMVSS 105); inertia loads e
15、quivalent to the vehicles LLVW and GVWR; fully operational, partial failure, and failed system conditions. All applicable sections of the FMVSS 105 are included. Optional sections include: parking brake output, water recovery, TP-121D dynamometer retardation, and 32 km/h (20 mph) stops to simulate F
16、ederal Motor Carrier Safety (FMCS) requirements. This Recommended Practice does not evaluate or quantify other brake system characteristics such as wear, noise, judder, ABS performance, or braking under extreme temperatures or speeds. Minimum performance requirements are not part of this recommended
17、 practice. Consistency and margin of pass/fail of the minimum requirements related to stopping distance or equivalent deceleration levels of the FMVSS 105 vehicle test can be assessed as part of the project in coordination with the test requestor when using the appropriate vehicle information and ve
18、hicle dynamics modeling. Nevertheless, this procedure and its results do not replace the vehicle-level test to demonstrate compliance to FMVSS (105 for hydraulic brake systems or 121 for air-over-hydraulic brake systems), or other mandatory regulations (like ECE R13 or equivalents). 1.1 Purpose The
19、purpose of this procedure is to assess the performance of a brake corner assembly during conditions that correspond to the FMVSS 105 vehicle test procedure for applications above 4 540 kg (10 000 lbs) of GVWR. 2. REFERENCES 2.1 Related Publications The following publications are provided for informa
20、tion purposes only and are not a required part of this SAE Technical Report.2.1.1 Government Publications Available from the National Highway Safety Administration (NHTSA) Headquarters, 1200 New Jersey Avenue, SE, West Building, Washington, DC 20590, Tel: 202-366-4000 or TTY: 1-800-424-9153, www.nht
21、sa.dot.gov.571.105 Standard No. 105 - Hydraulic and Electric Brake Systems TP-121D-01 May 9, 1990 NHTSA - Office of Vehicle Safety Compliance (OVSC) Laboratory Test Procedure for FMVSS 121D Air Brake Systems Dynamometer. http:/www.nhtsa.gov/DOT/NHTSA/Vehicle%20Safety/Test%20Procedures/Associated%20F
22、iles/TP-121-d01.pdfTP-105-03 July 1, 2005 NHTSA - OVSC Laboratory Test Procedure for FMVSS 105 Hydraulic and Electric Brake Systems. http:/www.nhtsa.gov/DOT/NHTSA/Vehicle%20Safety/Test%20Procedures/Associated%20Files/TP-105-03.pdfSAE J2684 Issued NOV2011 Page 3 of 19 2.1.2 Other publications Availab
23、le from the Government Printing Office - Federal Motor Carrier Safety Regulations, 732 North Capitol Street, NW, Washington, DC 20401-0001, Tel: 202.512.1800, http:/www.gpo.gov/fdsys/browse/collectionCfr.action?collectionCode=CFR .393.52 Federal Motor Carrier Safety Regulations Handbook (FMCSR) - Br
24、ake Performance. Code of Federal Regulations Title 49 Subchapter B Part 393 Subpart C 2.1.3 SAE Publications Available from SAE International, 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 J2115 Air Brake P
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