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On the use of edge cracked short bend beam specimen for PMMA fracture toughness testing under mixed-mode I/II

机译:在混合模式I / II下PMMA断裂韧性测试的边缘裂纹短弯梁样品的使用

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摘要

In this paper an inclined edge cracked short beam specimen subjected to symmetric three-point bend loading was designed and examined for conducting mixed-mode I/II fracture toughness experiments. The aspect ratio (i.e. length to width ratio) and the loading span distance are considered much lower than the other conventional cracked bend beam samples. Crack tip parameters such as stress intensity factors and T-stress were computed numerically for this specimen by several finite element analyses and it was demonstrated that the specimen is able to produce full combinations of mode I and II including pure mode II. The practical capability of the short bend beam specimen was studied experimentally by conducting a set of mixed-mode fracture tests on PolymethylMethacrylate (PMMA) as a well-known model brittle material. The critical stress intensity factors, the direction of fracture kinking and the path of fracture trajectory were investigated both experimentally and theoretically using two stress and strain-based fracture criteria. The fracture toughness of tested PMMA was decreased by moving towards mode II case due to the effect of T-stress on the fracture mechanism of the short bend beam specimen.
机译:在本文中,设计并检查了对称三点弯曲负荷进行对称三点弯曲负荷的倾斜边缘裂纹的短梁样本,用于进行混合模式I / II断裂韧性实验。纵横比(即宽度比的长度)和装载跨度距离被认为远低于其他传统的裂缝弯曲光束样本。裂纹尖端参数,例如应力强度因子和T胁迫被数值通过几种有限元分析计算该样本,并且证明样本能够在包括纯模式II的模式I和II的完全组合。通过在聚甲基丙烯酸甲酯(PMMA)上的一组混合模式断裂试验作为众所周知的模型脆性材料,通过实验研究短弯梁样本的实际能力。使用两个应力和应变的骨折标准在实验和理论上研究临界应力强度因子,裂缝扭结方向和断裂轨迹的路径。由于T胁迫对短弯角梁样本的断裂机构的影响,通过朝向模式II壳体移动,降低了测试PMMA的断裂韧性。

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