GMW GMW16902-2013 Polypropylene - 45% Glass Mineral Reinforced Sheet Compression Molded Issue 1 English.pdf
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1、 WORLDWIDE ENGINEERING STANDARDS Material Specification GMW16902 Polypropylene - 45% Glass/Mineral Reinforced, Sheet, Compression Molded Copyright 2013 General Motors Company All Rights Reserved March 2013 Page 1 of 4 1 Scope 1.1 Material Description. This standard covers the properties of a 45% gla
2、ss/mineral reinforced polypropylene sheet, homopolymer used in a compression molding process. 1.2 Symbols. The material abbreviation according to ISO 11469 is PP-(GF33+TD12) . 1.3 Typical Applications. Typical applications include non-Class “A” surface appearance structural components such as the fo
3、llowing; underbody panels, chassis shields, bumper beams, running boards. 1.4 Remarks. Not applicable. 2 References Note: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/Specifications. ISO 75 ISO 1183 ISO 6603-1/2 ISO 11469 ISO 178 ISO 3451-1 ISO
4、 11359-2 SAE J1686 ISO 527-1/2 2.2 GM Standards/Specifications. GMW3013 GMW3221 GMW14650 GMW15725 GMW3059 GMW14444 2.3 Additional References. TMC003 Material Safety Data Sheet guidance documents (available at ). 3 Requirements Materials approved to this specification shall meet the requirements of G
5、MW3013, General Requirements for Handling of Technical Terms of Delivery for Plastics. 3.1 Requirements on Delivery. The physical, mechanical and thermal properties that characterize the material are summarized in Table 1. Note: The requirements to Table 1 shall be documented for self-certification
6、of the product according to GMW3013. The color shall be specified on drawings, in material specifications, and otherwise. 3.1.1 Requirements on Test Specimens. Unless otherwise specified, all specimens for test shall be obtained from molded plaques with a thickness of 2.5 mm 0.5 mm. The specimens sh
7、all be molded using temperatures and pressures typical of those used in production. All tests shall be performed on specimens 40 h minimum after molding and immediately following a conditioning period of 24 h minimum in a controlled atmosphere per GMW3221, Code A unless otherwise specified. All test
8、s shall be performed on unannealed specimens. Five coupons minimum shall be tested. The average value is the material property value. 3.1.2 Chemical Requirements. All parts manufactured from molding compounds shall be resistant to the media they contact at their place of use. 3.2 Requirements on Mat
9、erials. See Table 1. 3.3 Performance Requirements. All finished parts for Interior applications shall meet the requirements according to GMW14444. All finished parts for Exterior applications shall meet the requirements according to Copyright General Motors Company Provided by IHS under license with
10、 General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW16902 Copyright 2013 General Motors Company All Rights Reserved March 2013 Page 2 of 4 GMW14650. All finished parts for Engine Compartment applications shal
11、l meet the requirements according to GMW15725. 3.3.1 Limitations. Parts made of this material are subject to the following limitations. 3.3.1.1 Maximum continuous use temperature shall not exceed 125 C. 3.3.1.2 Maximum short term use, 30minutes, shall not exceed 145 C. 3.4 Compound Properties. The f
12、ollowing are also required for full specification approval. The minimum number of lots per test required is one: Poissons Ratio, Stress Strain Curve at +23 C, +85 C, -30 C; Differential Scanning Calorimetry (DSC) Curve; and Infrared Spectroscopy Curve. Table 1: Compound Properties Note 1, Note 2 Pro
13、perty Standard Unit Value Ash ISO 3451-1, Method A % by Mass 45 3 Specific Gravity ISO 1183, Method A g/cm3 1.26 0.05 Tensile Strength at Break ISO 527-1, ISO 527-2, Specimen A, Test speed 5 mm/minute MPa 76 Tensile Elongation at Yield ISO 527-1/2 % 1.8 Tensile Modulus ISO 527-1/2 MPa 5500 Flexural
14、Modulus At 23 C At 80 C ISO 178, Method 1 MPa 5300 4800 Multiaxial Impact at +23 C, 2.2 m/s ISO 6603-1/2 Energy at maximum load, Sample size 60 mm x 60 mm J 15 Multiaxial Impact at -30 C, 2.2 m/s ISO 6603-1/2 Energy at maximum load, Sample Size 60 mm x 60 mm J 21 Tensile Strength after Heat Aging 10
15、00 h at 100 C ISO 527-1, ISO 527-2, Specimen A, Test Speed 5 mm/minute % Retention 75 Deflection Temperature Under Load, 1800 kPa, Method A ISO 75 (refer to SAE J1686), flatwise C 155 Coefficient of Linear Thermal Expansion (CLTE) Parallel to flow Transverse to flow ISO 11359-2 Thermal Mechanical An
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