GMW GMW14785-2012 Coolant Joint Pressure Vibration Temperature (PVT) Cycle Test Issue 2 English.pdf
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1、 WORLDWIDE ENGINEERING STANDARDS Test Procedure GMW14785 Coolant Joint Pressure Vibration Temperature (PVT) Cycle Test Copyright 2012 General Motors Company All Rights Reserved August 2012 Originating Department: North American Engineering Standards Page 1 of 19 1 Scope Note: Nothing in this standar
2、d supercedes applicable laws and regulations. Note: In the event of conflict between the English and domestic language, the English language shall take precedence. 1.1 Purpose. The purpose of this test is to evaluate the sealing capability of engine coolant hose connections and evaluate individual c
3、omponents of the hose connections by subjecting coolant hoses and their attachments to a thermal aging process and a pressure and motion/vibration cycle. 1.2 Foreword. Not applicable. 1.3 Applicability. This test is applicable to all vehicles and trucks utilizing glycol/water cooled internal combust
4、ion engines. 2 References Note: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/Specifications. None 2.2 GM Standards/Specifications. GMW14870 2.3 Additional References. 9985809 P-V-T Users Manual 3 Resources 3.1 Facilities. 3.1.1 A complete Press
5、ure-Vibration-Temperature (P-V-T) facility to enclose the coolant joints and related fixturing. The facility will include but is not limited to: 3.1.1.1 An environmental chamber capable of maintaining operating temperatures ranging from (-40 2) C to (+121 2) C (-40 3) F to (+ 250 3) F). 3.1.1.2 A mo
6、tion/vibration inducing system capable of ( 1.27) cm ( 0.5 in) displacement at a frequency of 60 cycles per minute. Displacement capability of up to ( 2.54) cm ( 1.0 in) or more is suggested to support exploratory testing. See Appendix D, Figure D1. 3.1.1.3 A variable displacement coolant circulatio
7、n pump capable of flowing coolant through the hoses at a rate of 11.3 L/minute to 19.0 L/minute (5.0 gal/minute) at room temperature. 3.1.1.4 A pressurization system capable of pressurizing the coolant to 0 kPa, 105 kPa, and 210 kPa (0 psig, 15 psig, and 30 psig, 0.5 psig), at a rate of 8 kPa/s (1 p
8、sig/s) at ambient temperature. 3.1.1.5 A coolant heater capable of heating the coolant to a maximum of (+121 2) C (+250 3) F). 3.1.1.6 An operating system (automatic or manual), with instrumentation, to control the test parameters listed above. 3.2 Equipment. 3.2.1 Instrumentation. Provided by IHSNo
9、t for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14785 Copyright 2012 General Motors Company All Rights Reserved August 2012 Page 2 of 19 (Optional) A precision measuring device to determine air tool speed in rpm. (Optional) Press
10、ure transducer, strip chart recorder, digital data logger, direct current (DC) amplifier, DC power supply to monitor pressurization ramp rate. No additional instrumentation required unless specified/indicated on Test Work Order (TWO), Activity Request (AR) or Test Plan. Note: Instrumentation is to b
11、e calibrated per laboratory standard practice. 3.2.2 Test Equipment. 3.2.2.1 Torquing Device. A pneumatic or electric torquing tool with microprocessor-based torque/angle controller monitor, having a power rating of 0.25 kW (1/3 hp) or less, with free speed not to exceed 350 rpm. Optional: A digital
12、 hand torque wrench. 3.2.3 Fixturing. Miscellaneous fixturing, fasteners, manifolds, and other mounting provisions to accommodate the test material. 3.3 Test Piece. Test material includes all hoses and attachments required to recreate/simulate in-vehicle installation. 3.3.1 Hoses/Assemblies. Complet
13、e hoses or hose assemblies including clamps and/or quick connects. For Validation testing, these should be certified hoses provided by the hose supplier, unless otherwise specified by the Requesting Engineer. For Development testing, the Requesting Engineer should specify hose conditions required/al
14、lowed. 3.3.2 Attachments. All attaching hardware, including retaining clips, brackets, etc., which constrain hose movement. 3.3.3 Fittings. One set of fittings for each hose/assembly to be tested simultaneously in the chamber, plus one additional set for installation force measurement. A set of fitt
15、ings is comprised of one production fitting (or production representative fitting for each free end of the hose/assembly). 3.3.4 Coolant. To reduce the formation of steam, coolant mixture shall be 85% ethylene glycol per 9985809 and 15% distilled water by volume. 3.3.5 Lubricant. Some fittings may r
16、equire lubrication, per direction from test requestor. If required, apply lubricant specified by test requestor, approximately six (6) ml per fitting. Record lubricant part number in test log. 3.4 Test Time. Times are dependent on the number of samples which can be tested simultaneously. The followi
17、ng estimates are for a minimum of two samples and maximum of six (6) samples. Calendar time: 10 days to 15 days (typical) Test hours: 6 hours to 20 hours Coordination hours: 10 hours to 20 hours 3.5 Test Required Information. 3.5.1 Test Work Order, Activity Request (AR), or equivalent local authoriz
18、ing documentation. 3.5.2 Test Log Data, both manual and digital. (Appendix B) 3.5.3 Validation Test and Vehicle Review form. (Appendix B) 3.5.4 Hose assembly part numbers and installation layouts clearly describing the X, Y, Z mounting locations of all fittings, hoses, clips and brackets, as require
19、d. (Appendix C) 3.5.5 Test Plan. Provide a plan, including purpose/scope of test, material availability date, required completion date, etc., per local requirements. 3.5.6 P-V-T Users Manual. 3.6 Personnel/Skills. Not applicable. 4 Procedure 4.1 Preparation. 4.1.1 Documentation. Procure the referenc
20、e documents specified in Section 3.5. Record test information and test type, Test Work Order/Activity Request /Task Number, dates, sample part numbers, etc. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14785 C
21、opyright 2012 General Motors Company All Rights Reserved August 2012 Page 3 of 19 4.1.2 Facility Preparation. Procure the test facility as defined in Section 3.1. Note: Refer to test plan to confirm motion/vibration displacement. 4.1.3 Equipment Preparation. Procure the test equipment, instrumentati
22、on, and fixturing described in Section 3.2. 4.1.4 Test Setup. 4.1.4.1 Review P-V-T Users Manual for system operation. 4.1.4.2 Number all hose test samples in sequential order and label each joint which is “on test“, according to its fitting type, (i.e., engine, radiator, heater, surge tank, etc.) Fo
23、r example: The radiator connection of hose No. 1 would be labeled R1, engine connection E1, etc. 4.1.4.3 Measure fittings, hoses, and installation force, per GMW14870 and document results. This information will be helpful for root cause determination in the event of a leak, blow off or installation
24、effort concern. 4.1.4.4 Install the test sample(s) on the test frame per installation assembly layout, (i.e., orientation of clamps and hoses). Installation of the hoses should match the in-vehicle mounting dimensions and orientation. Any deviation from the installation assembly layout must be appro
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