GMKOREA EDS-T-7518-2006 TEST METHOD DETERMINING THE FLEXURAL STRENGTH OF PLASTICS (VERSION 5).pdf
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1、GM DAEWOO Auto & Technology EDS Engineering, GM DAEWOO Auto & Technology Standards TEST METHOD DETERMINING THE FLEXURAL STRENGTH OF PLASTICS EDS-T-7518 ISSUED DATE: 1995. 09. 06 REVISED DATE: 2006. 06. 19 VERSION: 5 EDS-T-7518TEST METHOD DETERMINING THE FLEXURAL STRENGTH OF PLASTICS PAGE: 1/4 ISSUED
2、 DATE: 1995. 09. 06 REVISED DATE: 2006. 06. 19 VERSION: 5 GM DAEWOO Auto & Technology 1. SCOPE This standard is used to determine the strength and deformation characteristics of plastic test specimens when flexural loads are applied on plastic test specimens. 2. DEFINITION 2.1. Flexural stress: The
3、quotient of the bending moment in the test specimen at its center at any moment of the test divided by the moment of resistance before the test. 2.2. Flexural strength: Flexural stress at the maximum load. 2.3. Three-point loading flexural test: The bar rests on two supports and is loaded by means o
4、f a loading nose midway between the supports (see Fig 1). 3. APPARATUS 3.1. Flexural Testing Machine It shall be capable of steadily maintaining the test speed up to (50010)mm/min and furnished with force-extension meter. Jigs for bending tests shall be easily mounted to and separated form it. 3.2.
5、Loading Noses and Supports The radius of the nose or noses and supports shall be at least 3.2mm for all specimens as shown in Fig 1 and Fig 2. For specimens 3.2mm or greater in depth, the radius of the supports may be up to 1.5 times the specimen depth and the radius of the loading noses may be up t
6、o 4 times the specimen depth. 3.2.1. Test data have shown that the loading nose and support dimensions can influence the flexural properties values. Fig 1. Loading Noises and Supports Diagram Three-point Loading EDS-T-7518TEST METHOD DETERMINING THE FLEXURAL STRENGTH OF PLASTICS PAGE: 2/4 ISSUED DAT
7、E: 1995. 09. 06 REVISED DATE: 2006. 06. 19 VERSION: 5 GM DAEWOO Auto & Technology 3.3. Micro Meter Micro Meter capable of measuring thickness of specimens 0.03mm. 4. TEST SPECIMENS 4.1. Preparation of Test Specimen Preparation of Test Specimen depend on the product being tested and will be based on
8、the information in the standards for the product concerned. The test specimen may either be manufactured direct, i.e. by extrusion or injection moulding or by machining. All surfaces and edges must be free from damage and defects so as to exclude the possibility of notch effects. If flash marks occu
9、r when the test specimen is produced, these should be removed, whilst avoiding any damage to the surface. All such work shall be carried out in the longitudinal direction of the test specimen. If it is likely that the product is anisotropic, test specimens should be taken both parallel to and perpen
10、dicular to the expected direction of the anisotropy. 4.2. Shape and Dimensions of Test Specimens Unless the dimension of the test specimen is reported in the EDS material spec., it is defined as follow. 4.2.1. Three-point loading flexural Test Dimensions of test specimens for various support span-to
11、-depth ratios are shown in Table 1. The recommended specimen for molding materials(thermoplastics and thermosets) is (12712.73.2)mm tested flatwise on a support span, resulting in a support span-to-depth ratio of 16. Thicker specimens should be avoided if they exhibit significant shrink marks or bub
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