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Dynamic fracture behaviors of cracks in a functionally graded magneto-electro-elastic plate

机译:功能梯度磁电弹性板中裂纹的动态断裂行为

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In this paper the dynamic anti-plane problem for a functionally graded magneto-electro-elastic plate containing an internal or an edge crack parallel to the graded direction is investigated. The crack is assumed to be magneto-electrically impermeable. Integral transforms and dislocation density functions are employed to reduce the problem to Cauchy singular integral equations. Field intensity factors and energy release rate are derived, analyzed and partially calculated numerically. The effects of material graded index, loading combination parameter (including size and direction) and geometry criterion of the plate on the dynamic energy release rate are shown graphically. Numerical results indicate that increasing the graded index can all retard the crack extension, and that both the applied magnetic field loadings and electric field loadings play a dominant role in the dynamic fracture behaviors of crack tips.
机译:本文研究了功能梯度磁电弹性板的动态反平面问题,该板具有平行于梯度方向的内部或边缘裂纹。假定该裂纹是磁电不可渗透的。采用积分变换和位错密度函数将问题简化为柯西奇异积分方程。场强因子和能量释放率被导出,分析并部分地被数值计算。图形化地显示了材料分级指数,载荷组合参数(包括尺寸和方向)以及板的几何准则对动态能量释放速率的影响。数值结果表明,增加梯度指数都可以延缓裂纹扩展,并且施加的磁场载荷和电场载荷均在裂纹尖端的动态断裂行为中起主导作用。

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