GMW GMW16563-2011 Structural Low-Density Carbon Glass Hybrid Sheet Molding Composite English Issue 1《结构型低密度的碳 玻璃混合板模塑材料 第1次出版(英文版本)》.pdf
《GMW GMW16563-2011 Structural Low-Density Carbon Glass Hybrid Sheet Molding Composite English Issue 1《结构型低密度的碳 玻璃混合板模塑材料 第1次出版(英文版本)》.pdf》由会员分享,可在线阅读,更多相关《GMW GMW16563-2011 Structural Low-Density Carbon Glass Hybrid Sheet Molding Composite English Issue 1《结构型低密度的碳 玻璃混合板模塑材料 第1次出版(英文版本)》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、 WORLDWIDE ENGINEERING STANDARDS Material Specification GMW16563 Structural Low-Density, Carbon/Glass Hybrid Sheet Molding Composite Copyright 2011 General Motors Company All Rights Reserved October 2011 Originating Department: North American Engineering Standards Page 1 of 5 1 Scope 1.1 Material De
2、scription. This specification covers the properties of a polyester low density Sheet Molding Compound (SMC), reinforced with 15% carbon fiber and 30% glass fibers, all are randomly oriented and 25 mm in length. The cured material shall have a density of 1.4 g/cm3 maximum. 1.2 Symbols. Not applicable
3、. 1.3 Typical Applications. Typical applications include the following: Structural Body Panels. 1.4 Remarks. The material must meet the bondability requirements of GMW15921. 2 References Note: Only the latest approved standards are applicable unless otherwise specified. 2.1 External Standards/Specif
4、ications. ISO 62 ISO 1172 ISO 178 ISO 1183 ISO 180/U ISO 2577 ISO 527 ISO 6603-2 ISO 527-1/2 ISO 11359-2 2.2 GM Standards/Specifications. GMW3059 GMW15921 GMW3221 2.3 Additional References. TMC003 Material Safety Data Sheet guidance documents (available at ). 3 Requirements 3.1 Test Procedures. Test
5、s shall be conducted using the latest issue of the test methods indicated. Suitable precautions should be taken to ensure that applicable safe limits are not exceeded when conducting test procedures, processes, and/or handling the materials required by this specification. 3.1.1 Properties shall be d
6、etermined using test specimens router cut from SMC test plaques. Plaques shall be molded as shown in Appendix A, Figure A1. Plaques shall be molded using the mold temperatures, mold pressure and cure cycle that will be used to mold production parts. Each material vendor shall define these molding co
7、nditions in this certifiable data package. The length and width of the test mold, as well as the gate configuration, shall be included in the certification package. Plaques shall be 2.5 mm 0.1 mm thick. Weight variation between plaques shall not exceed 3.0%. 3.1.2 Raw materials used for compounding
8、shall be within their vendor defined shelf life. Plaques shall be molded 7 days maximum after compounding. Plaques shall be uniform in appearance and free from blisters, pregels, knit lines, cracks, and surface contamination. Porosity shall be one pit maximum per 625 mm2. Surfaces shall also be free
9、 of external mold release. (Mold and scrap a minimum of three plaques after using external mold release). 3.1.3 An equal number of specimens shall be cut from both the longitudinal and transverse plaque directions for each mechanical property. The specimens shall be tested and the results averaged.
10、The average value is the material property value. This value is compared to the required value shown in Table 1. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW16563 Copyright 2011 General Motors Company All Rig
11、hts Reserved October 2011 Page 2 of 5 3.1.4 Tests shall be conducted 40 h minimum after molding and immediately following a conditioning period of 24 h minimum at 22 C 3 C and 50 5% relative humidity (RH) unless otherwise specified. All testing shall be done on unannealed samples. 3.1.5. Requirement
12、s on Test Specimens. Reference GMW3221, Code A. 3.2 Compound Properties. 3.2.1 Compound Properties (Natural, Gray and Black). See Table 1. Table 1: Compound Properties Properties Test Values Test Methods Glass Fiber Reinforcement 28 to 35% ISO 1172 Carbon Fiber Reinforcement 13 to 17% ISO 1172 Moist
13、ure Absorption 0.5% maximum ISO 62 Method 1 Density 1.4 g/cm3 maximum ISO 1183 Method A Flexural Modulus At +22 C 0.5 mm deflection 2.5 mm deflection At 150 C 0.5 mm deflection 2.5 mm deflection 9400 MPa minimum 8000 MPa minimum Report Report ISO 178 Method 1. Three point loading. 1.3 mm/minute, 70
14、mm length 10 mm wide, thickness 2.5 mm to 3.0 mm, 60 mm span, secant calculations at 0.5 mm and 2.5 mm deflection. Flexural Strength 140 MPa minimum ISO 178 Method 1 Tensile Strength at Break 50 MPa minimum ISO 527 Tensile Modulus 12 000 MPa minimum ISO 527 Multiaxial Instrumented Impact Maximum Loa
15、d Deflection to Maximum Load Energy to Maximum Load Total Energy 680 N minimum 6 mm maximum 1.8 J minimum 2.3 J minimum ISO 6603-2/40/20/c/2.2 Poissons Ratio Report ISO 527-1/2 Coefficient of Linear Thermal Expansion (CLTE) Report ISO 11359-2, Mean secant value over the temperature range -30 C to +1
16、50 C Unnotched Izod Impact Report kJ/m2 ISO 180/U Mold Shrinkage Note 1 +0.0003 0.013% ISO 2577 Note 1: This property assures reproducible mold shrinkage, but does not indicate the shrinkage to use to cut tools for production parts. 3.2.2 Constituent Materials. Individual specifications for the mate
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