GMW GMW16295-2013 Coolant Hose Coupled Assembly and Quick-Connectors Issue 3 English.pdf
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1、 WORLDWIDE ENGINEERING STANDARDS General Specification GMW16295 Coolant Hose Coupled Assembly and Quick-Connectors Copyright 2013 General Motors Company All Rights Reserved February 2013 Page 1 of 13 1 Introduction Note: Nothing in this standard supercedes applicable laws and regulations. Note: In t
2、he event of conflict between the English and domestic language, the English language shall take precedence. 1.1 Scope. This specification defines the Design Validation (DV), Production Validation (PV) and Steady State Part Monitoring (SSPM) requirements for: coolant hose and tube assemblies, coolant
3、 quick-connect fittings, crimp connections, over-mold connections, or any non-standard connection that does not meet the GM best practice, Heating, Ventilation, Air Conditioning Powertrain Cooling (HVACPTC) - 264 the global metric coolant connection standards sizes for hoses/fittings. GM engineering
4、 may require any connection not described above be subjected to this specification prior to acceptance. 1.2 Mission/Theme. Not applicable. 1.3 Classification. Not applicable. 2 References Note: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/Speci
5、fications. ASTM A254 ASTM D380 SAE J1344 2.2 GM Standards/Specifications. GMW3059 GMW3420 GMW14785 GMW15758 GMW3116 GMW8758 GMW14872 GMW15760 GMW3286 GMW14573 GMW15272 GMW15920 2.3 Additional References. 9985809 CG2046 3 Requirements 3.1 System/Subsystem/Component/Part Definition. Not applicable. 3.
6、1.1 Appearance. Not applicable. 3.1.2 Content. Not applicable. 3.1.2.1 Physical Content. Not applicable. 3.1.2.2 Functional Content. Not applicable. 3.1.3 Ambient Environment. Not applicable. 3.1.4 Interfaces. Not applicable. 3.1.5 Usage Definition. Not applicable. 3.2 Product Characteristics. All c
7、rimps, over-molds (plastic molded rings acting as crimps), and non-standard clamp joints shall be described as; coupled assemblies, for the remainder of this document. 3.2.1 Performance Requirements. 3.2.1.1 Fixed-Value Performance Testing Requirements. GM engineering to agree to samples before test
8、ing should begin. For sample requirements and quantities, see 3.7. Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW16295 Copyright 2013 G
9、eneral Motors Company All Rights Reserved February 2013 Page 2 of 13 3.2.1.1.1 Leak Test. 3.2.1.1.1.1 Coupled Assemblies. There shall be no indication of air leakage at the coupling or in the hose member when the assembly is subjected to a minimum of 350 kPa of air pressure when tested per 4.3.1.1.
10、3.2.1.1.1.2 Quick-Connector Assemblies. There shall be no indication of air leakage from the connector assembly, or from the hose member, after allowance for temperature compression at a minimum of 500 kPa for quick connectors smaller than 20 mm sealing surface diameter, and 400 kPa for quick connec
11、tors greater than 20 mm sealing surface diameter when tested per 4.3.1.2. Temperature compression is defined as the compression set of the rubber compounds for either the hose construction or the O-rings in the quick connect which create the sealing. This means that the crimped hose assemblies and t
12、he internal seals of the quick connect can experience compression set in the compound but there can be no leakage attributed to this condition. The rubber compound and the coupling or sealing must allow for the compression set and still perform to the standard without leaking. 3.2.1.1.2 Cold Leak Te
13、st. Sample must weigh within 3.0 g of original weight when tested per 4.3.1.2. 3.2.1.1.3 Tensile Test. The load at failure either by separation of the hose specimen from the end fittings, or by a rupture of the hose structure, shall not be less than 668 N when samples at nominal hose compression are
14、 tested per 4.3.1.3. 3.2.1.1.4 Blow-Off. There shall be no indication of leakage at the coupled assembly, quick connect or in the bulk hose, during the 180 s hold period when samples at nominal hose compression are tested per 4.3.1.4. The final blow-off pressure shall exceed 550 kPa for coupled asse
15、mblies and 700 kPa for quick connectors. 3.2.1.1.5 Blow-Off After Heat Aging. There shall be no indication of leakage at the coupled assembly, quick connect or in the bulk hose, during the 180 s hold period when samples at nominal hose compression are tested per 4.3.1.5. The final Blow-off pressure
16、shall exceed 550 kPa for coupled assemblies and 700 kPa for quick connectors. 3.2.1.1.6 Vacuum Test. The assembly must hold the vacuum within 3% during the 10 minute hold period when samples at nominal hose compression are tested per 4.3.1.6. 3.2.1.1.7 Insertion Force Test (Quick Connect). The maxim
17、um insertion load shall not be more than 89 N when samples are tested per 4.3.1.7. 3.2.1.1.8 Pull-Out Force Test (Quick Connect). The quick-connector pull-out load must exceed 668 N when samples at nominal hose compression are tested per 4.3.1.8. 3.2.1.1.9 Cleanliness Test. There shall be no visual
18、evidence of corrosion of either internal or external metal surfaces when hoses at nominal hose compression are tested per 4.3.1.9. No greater than 0.25 g/m2 of internal surface area of contaminants is permitted. 3.2.1.1.10 Cyclical Corrosion Test. Sample must show no greater than 10% base metal corr
19、osion when tested per 4.3.1.10. The assembly must meet all of the requirements of the Leak Test (3.2.1.1.1) and the Blow-off Test (3.2.1.1.4) after the cyclical corrosion test has been performed. All test samples from this test must be forwarded to GM Global HVAC/PTC engineering for evaluation at th
20、e end of the test. 3.2.1.1.11 Salt Spray Test. After 168 h of the salt spray test, assembly shall not exhibit evidence of any red rust on ferrous parts when tested per 4.3.1.11. 3.2.1.1.12 Maximum Crimp Compression Condition (Coupling). No hose rubber or reinforcement damage generated by the crimpin
21、g operation is permissible in the samples when tested per 4.3.1.12. 3.2.1.1.13 Over-Crimp to Maximum Crimping (Coupling). Hose samples shall be tested per 4.3.1.13. Samples with maximum crimp, but without showing damage, shall be tested per and must meet the acceptance requirements of the Cold Leak
22、Test (See 3.2.1.1.2). Production controls and product design must be such that over-crimp to damage is not possible in production. 3.2.1.1.14 Error-Proofing Pull-Tab Test (Quick Connect Assemblies). 3.2.1.1.14.1 Partially Assembled Connectors. The pull-tab shall break through the finger pull area pr
23、ior to releasing from the connector when tested per 4.3.1.14. All pull-tab material shall remain with the connector. The force required to break the tab shall be a minimum of 12 N. 3.2.1.1.14.2 Fully Assembled Connectors. The pull-tab shall not break during the removal process. The maximum force req
24、uired to remove the pull-tab shall not exceed 2.5 N when tested per 4.3.1.14.2. Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW16295 Cop
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