GMW GMW3417-2011 Natural Weathering Exposure Tests for Interior Trims Materials Issue 2 English《内部装饰 材料的自然气候暴露试验 第2次出版(英文版本)》.pdf
《GMW GMW3417-2011 Natural Weathering Exposure Tests for Interior Trims Materials Issue 2 English《内部装饰 材料的自然气候暴露试验 第2次出版(英文版本)》.pdf》由会员分享,可在线阅读,更多相关《GMW GMW3417-2011 Natural Weathering Exposure Tests for Interior Trims Materials Issue 2 English《内部装饰 材料的自然气候暴露试验 第2次出版(英文版本)》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、 WORLDWIDE ENGINEERING STANDARDS Test Procedure GMW3417 Natural Weathering Exposure Tests for Interior Trims/Materials Copyright 2011 General Motors Company All Rights Reserved November 2011 Originating Department: North American Engineering Standards Page 1 of 6 1 Scope Note: Nothing in this standa
2、rd 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. This test procedure describes procedures for conducting natural weathering exposure tests to evaluate the exposure toleran
3、ce of interior automotive materials, components and assemblies. The tests are conducted in climatic regions which offer extreme solar environments. 1.2 Foreword. This test procedure was developed to create a common method for evaluating natural weathering. 1.3 Applicability. Not applicable. 2 Refere
4、nces Note: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/Specifications. ISO 105-A02 ISO 2813 2.2 GM Standards/Specifications. GMW6992 GMW14444 3 Resources 3.1 Facilities. 3.1.1 Test Location Area. Code L1 = Phoenix, Arizona, USA Code L2 = Miami
5、 or Southern Area, Florida, USA Code L3 = Juarez, Mexico Code L4 = Allunga, Queensland, Australia Code L5 = Cruz Alta, Brazil Code L6 = Okinawa, Japan 3.2 Equipment. 3.2.1 Solar Exposure Equipment. 3.2.2 Test Fixtures. Code F1 = High temperature limited, enclosed with operable vents, under glass, st
6、atic box. Code F2 = High temperature limited, enclosed with operable vents, under glass, tracking box. Code F3 = High temperature limited, enclosed with operable vents, under glass, static box with added water tray. Code F4 = High temperature limited, enclosed with operable vents, under glass, track
7、ing box with added water tray. Code F5 = Naturally ventilated, under glass, static rack. Code F6 = Special tests requiring some nonstandard test condition(s) may be used if all parameters are defined and agreed to. Prefer using for development purposes only. Copyright General Motors Company Provided
8、 by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW3417 Copyright 2011 General Motors Company All Rights Reserved November 2011 Page 2 of 6 3.2.3 Glass Type. Code G1 = Clear tempere
9、d flat sheet glass, free of imperfections, with a thickness of 3 0.5 mm. Code G2 = Clear laminated glass incorporating a Dupont Butacyte, or equivalent automotive windshield laminate, with a thickness of 5.8 0.5 mm. 3.2.4 High Temperature Limits. Code T1 = Uncontrolled high temperature Code T2 = 77
10、C Code T3 = 85 C Code T4 = 93 C Code T5 = 102 C Code T6 = 110 C 3.2.5 The test fixtures should be located and spaced such that no fixture is significantly affected by shading or reflected radiation from another fixture or other object during daylight hours. 3.2.6 These test fixtures should face the
11、equator and be at an angle from the horizontal to help maximize solar exposure received throughout the year for the specific location. Report the angle used. 3.2.7 The fixtures should have sufficient interior volume to accommodate, when necessary, full assemblies such as instrument panels, consoles,
12、 door panels, and seat assemblies. 3.2.8 High temperature limiting fixtures (3.2.2 F1 to F4) should be equipped with a recirculating thermostatically controlled blower to prevent the temperature exceeding the specified maximum. The air recirculation system must be designed so that a uniform flow of
13、fixture interior air is directed across the reference black panel and the test specimen(s) surface from the rear toward the front of the fixture. The control system should turn the circulation on at the limit temperature and off at 3 C below the limit temperature. Note: High temperature limiting fix
14、tures must be equipped with over temperature protection in case of control system, blower, or power failure. This protection must activate at less than 6 C above the limit temperature. 3.2.9 Reference black panel shall be used to measure the fixture temperature. The measurement is taken on the back
15、surface of a black panel. The black panel shall be constructed of 0.60 0.06 mm thick sheet steel with dimensions of approximately 100 125 mm, primed and painted with black high heat spray paint. The panel to be mounted on approximately 13 mm thick black plywood with dimensions at least 110 135 mm wi
16、th a machined recess to allow space for a temperature sensor, thermocouple and their lead wires attached to the back of the black panel. The response of the temperature sensor must be such that its output does not lag the thermocouple by more than 3 C. 3.2.10 Pyranometers mounted at test fixture ang
17、le under test fixture glazing shall be capable of sensing incident solar radiation in 295 to 2800 nm wavelength range. Pyranometers shall be used with recording and data reduction equipment capable of providing hourly radiation measurements, at a minimum, and integrating over time to provide accumul
18、ated solar energy. This instrumentation must be stationary or azimuth tracking to match the test condition. 3.2.11 Ultraviolet (UV) radiometers mounted at test fixture angle under test fixture glazing shall be capable of sensing incident radiation in the 295 to 385 nm wavelength range. UV radiometer
19、s shall be used with recording and data reduction equipment capable of providing hourly radiation measurements, at a minimum and integrating over time to provide accumulated solar energy. This instrumentation must be stationary or azimuth tracking to match the test condition. 3.2.12 Ambient air temp
20、erature measuring equipment capable of recording temperatures hourly. 3.2.13 Ambient humidity measuring equipment capable of recording humidity measurements hourly. 3.2.14 Color Machine - Spectrophotometer capable of CIELAB measurements, with a ten degree standard observer, a D65 standard illuminate
21、 and an orifice size between 10 and 30 mm. The acceptable machine geometries are: 45 degree/normal (45/0) normal/45 degree (0/45) diffused/normal (d/0) normal/diffused (0/d) Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or net
22、working permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW3417 Copyright 2011 General Motors Company All Rights Reserved November 2011 Page 3 of 6 If a diffused geometry instrument is used, the specular component of reflectance shall be included in the measurement. The ang
23、le between the sample normal and the illuminating beam in 0/d geometry, and the angle between the sample normal and the viewing beam in d/0 geometry, shall not exceed ten degrees. 3.2.15 Glossmeter - Capable of measuring the specular gloss on test specimen surfaces and complying with ISO 2813. 3.2.1
24、6 Gray Scale for Color Change ISO 105-A02. 3.2.17 Thermocouples and associated recording and data reduction equipment capable of providing temperature information of test specimens on an hourly basis at a minimum, when required. 3.3 Test Vehicle/Test Piece. Not applicable. 3.4 Test Time. The timing
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