GMW GMW14594-2012 Steering Wheel Bending Strength Issue 2 English.pdf
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1、 WORLDWIDE ENGINEERING STANDARDS Test Procedure GMW14594 Steering Wheel Bending Strength Copyright 2012 General Motors Company All Rights Reserved August 2012 Originating Department: North American Engineering Standards Page 1 of 10 1 Scope Note: Nothing in this standard supercedes applicable laws a
2、nd regulations. Note: In the event of conflict between the English and domestic language, the English language shall take precedence. 1.1 Purpose. To determine the deflection under load of all the variant (Polyurethane/Leather Wrap and or Wood) steering wheels, with a representative Driver Air Bag (
3、DAB) Module/Horn pad, when a bending load is applied at the Rim Position of 12:00 and 6:00. 1.2 Foreword. Not applicable. 1.3 Applicability. Steering wheels used in passenger cars, Multipurpose Passenger Vehicles (MPV), and trucks. 2 References Note: Only the latest approved standards are applicable
4、 unless otherwise specified. 2.1 External Standards/Specifications. None 2.2 GM Standards/Specifications. None 2.3 Additional References. Steering Wheel Load Stiffness Calculator (CG2982) (Provided by IHS the GM Document Resource for Engineering Standards.) 3 Resources 3.1 Facilities. Not applicable
5、. 3.2 Equipment. 3.2.1 Tensile compression test machine or equivalent capable of transmitting up to 2500 25 N, at a rate of deflection of 25 2.5 mm per minute and measuring and recording that deflection in a Microsoft Office 2007 Excel compatible format (sample rate of 0.1 mm increments or finer). T
6、est ambient temperature must be controlled to 23 5 C. 3.2.2 Metal-faced load application device as described in Appendix A, Figure A3, Figure A4, Figure A5 and Figure A6. 3.2.3 Fixture to support the steering wheel such that a load can be applied either in a direction parallel to the axis of the ste
7、ering wheel hub (12:00 oclock alignment) or 30 degrees from that direction (6:00 oclock alignment). 3.2.4 Bearing Lubricant. 3.2.5 Steering Wheel Rim Stiffness Calculator Excel File (Microsoft Office 2007 Excel). Note: All instrumentation is to be calibrated as required; record instrumentation detai
8、ls and date of calibration on Data Sheet A1 (see Appendix A), unless the information is otherwise preserved in the testing laboratory records. 3.3 Test Vehicle/Test Piece. Not applicable. 3.4 Test Time. Not applicable. Provided by IHSNot for ResaleNo reproduction or networking permitted without lice
9、nse from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14594 Copyright 2012 General Motors Company All Rights Reserved August 2012 Page 2 of 10 3.5 Test Required Information. Not applicable. 3.6 Personnel/Skills. Not applicable. 3.7 Development/Validation Items. 3.7.1 Test Material. Complete steerin
10、g wheel assemblies with a representative DAB module; i.e., all variants (Polyurethane/Leather Wrap and or Wood) of the steering wheel with DAB module. An untested steering wheel is required for each Rim Stiffness Test at 12:00 and 6:00. 4 Procedure 4.1 Preparation. 4.1.1 Rim Stiffness at 12:00 (For
11、Each Variant). 4.1.1.1 Mount the steering wheel on the horizontal support fixture and secure it to the loading machine table. Locate the 12:00 midpoint of the upper unsupported rim span in line with the vertical load application device pad (see Appendix A, Figure A1). 4.1.1.2 Apply bearing lubricant
12、 as needed. Record the ambient temperature. 4.1.1.3 Align the loading pad such that its 64 mm dimension is radial to the steering wheel (see Appendix A, Figure A1). Note: Start load pad at one end of linear bearing to allow for linear translation due to steering wheel deformation. 4.1.2 Rim Stiffnes
13、s at 6:00 (For Each Variant). 4.1.2.1 Mount the steering wheel on the support fixture and secure it to the loading machine table. Locate the 6:00 midpoint of the lower rim span 30 degrees from the load application device pad (see Appendix A, Figure A2). 4.1.2.2. Apply bearing lubricant as needed Rec
14、ord the ambient temperature. 4.1.2.3 Align the loading pad such that its 64 mm dimension is radial to the steering wheel (see Appendix A, Figure A2). Note: Start load pad at one end of linear bearing to allow for linear translation due to steering wheel deformation. 4.2 Conditions. 4.2.1 Environment
15、al Conditions. Testing to be conducted at 23 3 C ambient temperature. 4.2.2 Test Conditions. Deviations from the requirements of this standard shall have been agreed upon. Such requirements shall be specified on component drawings, test certificates, reports, etc. 4.3 Instructions. 4.3.1 Rim Stiffne
16、ss at 12:00. 4.3.1.1 Move cross head until the load application device pad is within 1 to 2 mm of contact to the 12:00 rim. Zero the load/deflection. 4.3.1.2 Deflect at a cross head rate of 25 2.5 mm per minute until 65 mm of deflection is reached. Collect load deflection data at a sample rate of 0.
17、1 mm increments or finer. 4.3.1.3 Remove Load. 4.3.1.4 Transfer data into Microsoft Excel format in order to use the stiffness calculator. Note: Do not average multiple load/deflection data before calculating stiffness. Do not force fit data into 0.1 mm increments. Calculate 12:00 stiffness: Follow
18、the instructions in the stiffness calculator and record the stiffness results on Data Sheet A2. Attach the summary graph to Data Sheet A2 (see Appendix A). 4.3.2 Bending Strength at 6:00. 4.3.2.1 Move cross head until the load application device pad is within 1 to 2 mm of contact to the 6:00 rim. Ze
19、ro the load/deflection recorder. 4.3.2.2 Deflect at a cross head rate of 25 2.5 mm per minute 65 mm of deflection reached. Collect load deflection data at a sample rate of 0.1 mm increments or finer. 4.3.2.3 Remove Load. Provided by IHSNot for ResaleNo reproduction or networking permitted without li
20、cense from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14594 Copyright 2012 General Motors Company All Rights Reserved August 2012 Page 3 of 10 4.3.2.4 Transfer data into a Microsoft Excel format in order to use the 6:00 steering wheel load plotter. Note: Do not average multiple load/deflection da
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