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ANALYSIS OF THE MIXED-MODE END LOAD SPLIT DELAMINATION TEST

机译:混合模式终端负荷分离分层测试分析

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Composite delaminations are commonly analysed using the double cantilever beam test for mode I, the end-notched flexure test or the end load split test for mode II and the mixed-mode bending test for mixed-mode. For all these tests, the mode mix remains constant and does not vary with the crack length. However, in the mixed-mode end load split test (MMELS), the delamination propagates under a varying mode mix that depends on the crack extension, which is a more realistic scenario. The MMELS test has been previously analysed by different researchers but the resulting expressions are not equivalent. A more accurate alternative analysis of the test, based on the finite element method and the virtual crack closure technique, is used in the present work for comparison. The results are compared to the predictions of the approaches in the literature and significant findings are found for materials characterization using the MMELS test.
机译:通常使用双悬臂梁试验进行分析的复合分层,用于模式I,端部缺口弯曲试验或模式II的终端载荷分离试验以及混合模式的混合模式弯曲试验。对于所有这些测试,模式混合保持恒定,并且不随裂缝长度而变化。然而,在混合模式结束负载分流测试(MMEL)中,分层在不同模式混合下传播,这取决于裂缝扩展,这是一种更现实的场景。先前已经被不同的研究人员分析了MMEL测试,但结果表达不等同。基于有限元方法和虚拟裂纹闭合技术,对测试的更准确的替代分析,用于本作比较。将结果与在使用MMEL测试的材料表征的材料表征的方法中的预测进行了比较。

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