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Fatigue crack analysis in piezoelectric specimens by a single-domain BEM

机译:压电试样疲劳裂纹的单域边界元分析

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In this paper, the fatigue crack problems in piezoelectric materials under cyclic mechanical loading or alternating electric field were analyzed by a single-domain boundary element method. To determine the direction of the crack propagation, the fracture criteria of maximum of hoop mechanical strain energy release rate was used. Meanwhile, for evaluating the remaining life of the cracked piezoelectric specimens, the Paris-type laws based on different fracture parameters were employed and compared. All the involved fracture parameters were computed by the interaction integral method. Numerical examples were considered and analyzed for cyclic mechanical and electrical loadings, respectively. The comparisons showed the efficiency of the present BEM program in analyzing fatigue cracks and the choice of the effective fracture parameter in Paris' law for life prediction.
机译:本文通过单域边界元法分析了压电材料在循环机械载荷或交变电场作用下的疲劳裂纹问题。为了确定裂纹扩展的方向,使用最大环向机械应变能释放速率的断裂准则。同时,为了评估破裂的压电样品的剩余寿命,采用了基于不同断裂参数的巴黎型定律并进行了比较。所有涉及的断裂参数均通过相互作用积分法计算。分别考虑并分析了循环机械和电气载荷的数值示例。比较结果表明,当前的BEM程序在分析疲劳裂纹方面是有效的,并且可以选择巴黎定律中预测寿命的有效断裂参数。

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