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首页> 外文期刊>International Journal of Solids and Structures >Effect of interface stress on the fracture behavior of a nanoscale linear inclusion along the interface of bimaterials
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Effect of interface stress on the fracture behavior of a nanoscale linear inclusion along the interface of bimaterials

机译:界面应力对双材料界面纳米尺度线性夹杂物断裂行为的影响

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a b s t r a c t This paper investigates the influence of residual interface tension on the fracture behavior of a nanoscale linear interface inclusion in a bimaterial matrix. Solutions to the inclusion opening displacement and the energy release rate are obtained. The results show that the interface effect on the inclusion deformation and inclusion tip field are prominent at nanoscale. Especially, the residual interface stress has a dramatic influence on the energy release rate. It is also found that the importance of the interface effect depends on the size of the inclusion, the shear modulus ratios of the bimaterial. The inclusion opening displacement and the energy release rate can be reduced considerably by decreasing the inclusion length at nanoscale.
机译:本文研究了残余界面张力对双材料基体中纳米级线性界面夹杂物的断裂行为的影响。得到了夹杂物的开孔位移和能量释放率的解。结果表明,界面对夹杂物变形和夹杂物尖端场的影响在纳米尺度上是显着的。特别地,残余界面应力对能量释放速率具有显着影响。还发现界面效应的重要性取决于夹杂物的尺寸,双材料的剪切模量比。通过减小纳米级的夹杂物长度,可以显着减小夹杂物开口位移和能量释放速率。

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