GMW GMW16693-2013 Multi-axis Seat Subsystem Durability Test Issue 1 English.pdf
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1、 WORLDWIDE ENGINEERING STANDARDS Test Procedure GMW16693 Multi-axis Seat Subsystem Durability Test Copyright 2013 General Motors Company All Rights Reserved February 2013 Page 1 of 11 1 Scope Note: Nothing in this standard supercedes applicable laws and regulations. Note: In the event of conflict be
2、tween the English and domestic language, the English language shall take precedence. 1.1 Purpose. This procedure evaluates the structural durability of a front or rear seat subsystem by subjecting it to real time load and displacement profiles. These profiles are designed and developed to represent
3、a lifetime usage. This procedure describes the durability test execution. 1.2 Foreword. 1.2.1 This procedure is primarily intended for laboratory test engineers and technicians. It does not cover every possible aspect of durability testing and is not to be used as a stand-alone procedure. Successful
4、 durability testing inherently requires engineering judgment and the ability to recognize and solve problems which are unexpected and/or complex. 1.2.2 This procedure utilizes a generic profile developed from Road Load Data Acquisition (RLDA or vRLDA), drive file development and correlation evaluati
5、on. The time required has been reduced by utilizing the damage cycles of a typical seat system and is provided in the appropriate Subsystem Technical Specification (SSTS) or Component Technical Specification (CTS). However, if a new architecture is developed, a new profile can be developed. 1.3 Appl
6、icability. This procedure applies to all free standing seats or partially free standing seats for GM passenger cars, Sport Utility Vehicles (SUV) and light and medium duty trucks. 2 References Note: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/
7、Specifications. None 2.2 GM Standards/Specifications. GMW15219 GMW15245 2.3 Additional References. Component Technical Specification Subsystem Technical Specification 3 Resources 3.1 Facilities. A bedplate large enough for securing the test rig and capable of withstanding dynamic loading of the test
8、 rig/specimen required. Also required is a hydraulic system capable of supplying oil at a rate consumed by a Multi-axial Simulation Table (MAST). The test facilities and equipment shall be in good working order and all instrumentation shall have a valid calibration label. 3.1.1 Calibration. The test
9、 facilities and equipment shall be in good working order and shall have a valid calibration label. 3.1.2 Alternatives. Alternative test facilities and equipment may also be used. However, all measuring variables as specified in this standard shall be determined correctly with respect to their physic
10、al definition. 3.2 Equipment. Note: The following list(s) include test rig, fixtures and transducers typically used by the GM Structural Development Laboratory to perform this test. Other equipment may be substituted at the discretion Copyright General Motors Company Provided by IHS under license wi
11、th General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW16693 Copyright 2013 General Motors Company All Rights Reserved February 2013 Page 2 of 11 of the local testing facility, as long as it provides the same
12、data and/or data record with equivalent accuracy as specified herein or by the requestor. 3.2.1 Test Rig. A simulation table capable of controlling 3 degrees of freedom, (vertical, lateral, and fore-aft). Also a multi-axis table with 6 degrees of freedom can be used. A typical MAST table in current
13、usage at GM with 3 degrees of freedom is shown in Figure A1. Alternative test equipment is also shown in Figures A2 and A3. 3.2.1.1 The simulation table surface area should be adequate to mount the test specimen and the appropriate fixtures. The hydraulic actuators should be sized appropriately to r
14、eproduce the acceleration as provided in the SSTS. 3.2.1.2 Fixtures. Fixturing is required to support the test specimen in its test position. 3.2.1.2.1 Fixture for Front Seats. A means to support the front seat system including rigid mounting blocks, or equivalent, simulating the floor attachment po
15、ints to mount the seat system in the test position on the MAST. A typical fixture for front seat subsystems is shown in Appendix B, Figure B1. 3.2.1.2.2 Fixture for Rear Seats. A means to support the rear seat system including rigid mounting blocks, or equivalent, simulating the attachment points to
16、 the vehicle. A fixture simulating the body is used for rear seat subsystems. 3.2.1.3 Loads. Loads as required in the SSTS to be added to the seat during durability testing. If no weight is specified, then the following default weights may be utilized. This test can also evaluate the seat in the fol
17、d down position with weights of 10 kg as shown in Appendix D, Figures D1 and D2. 3.2.1.3.1 Dummy. Dummy to simulate occupant of a 95% (90 kg) for outboard positions, and 50% (70 kg) for center. Typically water dummies with the approximate weights are utilized. 3.2.2 Transducers. 3.2.2.1 Acceleromete
18、r. Accelerometers are used to match the acceleration data that is provided in the SSTS or CTS as specified. The default accelerations in Appendix B, Table B1 may be utilized if approved by the GM responsible engineer. Remote parameter response coherent with the given direction for each actuator is r
19、equired for each of the hydraulic actuators controlling the motion of the table. Acceleration responses must be collected on the rigid body and/or frame side as required. It is important to insure that there are not additional accelerations being generated by less than robust attachment to structure
20、. 3.2.2.1.1 Loads/Strains. Loads and strains on the specimen can be used in a non-square matrix as additional control channels or for correlation. 3.2.2.1.2 Torque Wrench. A torque wrench is used to tighten all threaded fasteners to the specified torque. 3.3 Test Vehicle/Test Piece. Complete trimmed
21、 seat subsystem in the heaviest version. An appropriate seat subsystem consisting of all components necessary to qualify as complete for the model and trim level specified by the Design Release Engineer. This test can be completed on seat structure only by massing out the structure to represent the
22、missing components and simulating the center of gravity of a trimmed seat. 3.4 Test Time. The following is an estimate of the amount of time (work hours) needed to perform this procedure. Note: These time estimates are approximate averages. Actual times vary considerably depending on early component
23、 failures (and subsequent availability of replacement parts), testing to varying multiples of cycle lives, scheduling problems for test facilities, test equipment malfunctions, scheduling of overtime and/or multiple shifts, actual readiness of test samples upon receipt, unique or additional requests
24、 for detailed test information, running multiple samples (times shown are for one sample), etc. The reported times consider preparation and other downtime, actual test, and analysis of data in capturing a total calendar time. They are estimated ranges for a typical durability test and will vary base
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