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The effect of material combinations and relative crack size to the stress intensity factors at the crack tip of a bi-material bonded strip

机译:材料组合和相对裂纹尺寸对双材料粘结带裂纹尖端处的应力强度因子的影响

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摘要

Several types of singular stress fields may appear at the corner where an interface between two bonded materials intersects a traction-free edge depending on the material combinations. Since the failure of the multi-layer systems often originates at the free-edge corner, the analysis of the edge interface crack is the most fundamental to simulate crack extension. In this study, the stress intensity factors for an edge interfacial crack in a bi-material bonded strip subjected to longitudinal tensile stress are evaluated for various combinations of materials using the finite element method. Then, the stress intensity factors are calculated systematically with varying the relative crack sizes from shallow to very deep cracks. Finally, the variations of stress intensity factors of a bi-material bonded strip are discussed with varying the relative crack size and material combinations. This investigation may contribute to a better understanding of the initiation and propagation of the interfacial cracks.
机译:两种类型的奇异应力场可能出现在拐角处,这取决于材料的组合,两种粘结材料之间的界面与无牵引力的边缘相交。由于多层系统的故障通常起源于自由边缘拐角,因此对边缘界面裂纹的分析是模拟裂纹扩展的最基本方法。在这项研究中,使用有限元方法对材料的各种组合评估了承受纵向拉伸应力的双材料粘合带中边缘界面裂纹的应力强度因子。然后,通过将相对裂纹尺寸从浅裂纹扩展到深裂纹,系统地计算应力强度因子。最后,通过改变相对裂纹尺寸和材料组合,讨论了双材料粘结带的应力强度因子的变化。这项研究可能有助于更好地了解界面裂纹的产生和扩展。

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