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首页> 外文期刊>Journal of Materials Research >Crack penetration and deflection at a bimaterial interface in a four-point bend test
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Crack penetration and deflection at a bimaterial interface in a four-point bend test

机译:在四点弯曲测试中双材料界面处的裂纹渗透和变形

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The four-point bend (4PB) test is an industry standard in assessment of adhesion in thin films. Obtaining crack propagation along the desired interface plays a cardinal role in the success of this test. Crack penetration and deflection at a bimaterial interface has been extensively studied in the past. Most general results are based on asymptotic analyses involving the interface between two semi-infinite media. The results of these analyses cannot be directly used in case of the 4PB test since the boundary conditions and finite size effects in actual test specimen geometry are not accounted for. The purpose of this paper is twofold: first to develop a simple methodology to understand the preferred failure mode in a 4PB test and gain insight into the factors governing its success; second to examine the extent to which the results can be reconciled with those reported previously based on analysis of a crack in two semi-infinite media bonded together at the interface.
机译:四点弯曲(4PB)测试是评估薄膜附着力的行业标准。沿期望的界面获得裂纹扩展在该测试的成功中起着至关重要的作用。过去已经对双材料界面处的裂纹渗透和挠曲进行了广泛的研究。大多数一般结果基于涉及两个半无限媒体之间的界面的渐近分析。这些分析的结果不能直接用于4PB测试,因为没有考虑实际试样几何中的边界条件和有限尺寸效应。本文的目的是双重的:首先是开发一种简单的方法来理解4PB测试中的首选故障模式,并深入了解控制其成功的因素。第二,根据对界面处粘合在一起的两个半无限介质中的裂纹的分析,检查结果与以前报道的结果相符的程度。

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