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The influence of crack length and delamination width on the mode-III energy release rate of laminated composites

机译:裂纹长度和分层宽度对层状复合材料Ⅲ型能量释放速率的影响

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In this article, the modified split-cantilever beam (MSCB) is applied to investigate the dependence of the mode-III energy release rate (at crack initiation) on the crack length and the specimen width. The main goal of this study is to apply the same specimen geometry to both double-cantilever beam and end-notched flexure systems. The energy release rate of the specimen was calculated by an improved beam theory scheme, which was used to reduce the experimental data. The obtained results are comparable to those obtained by mode-I and mode-II tests, and they indicate the important role of the MSCB specimen. The results show that the energy release rate decreases significantly with the initial crack length and there is no crack length where the energy release rate becomes independent of it.
机译:在本文中,采用改进的分裂悬臂梁(MSCB)来研究III型能量释放速率(在裂纹萌生时)对裂纹长度和试样宽度的依赖性。这项研究的主要目标是将相同的试样几何形状应用于双悬臂梁和端部弯曲挠曲系统。通过改进的束理论方案计算了样品的能量释放速率,该能量释放速率用于减少实验数据。获得的结果与通过模式I和模式II测试获得的结果相当,它们表明了MSCB标本的重要作用。结果表明,随着初始裂纹长度的增加,能量释放速率显着降低,并且在没有能量释放速率的情况下没有裂纹长度。

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