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Functionally Graded Materials with Periodic Internal Cracks Subjected to Transient Loading

机译:具有周期性内部裂纹且承受瞬时载荷的功能梯度材料

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摘要

A periodic array of cracks in a functionally graded material under transient mechanical loading is investigated. Anti-plane shear loading condition is considered. A singular integral equation is derived, in which the crack surface displacement is the unknown function. Numerical results are obtained to illustrate the variations of the stress intensity factors as a function of the crack periodicity for different values of the material nonhomogeneity, either at the transient state or at the steady state. The material non-homogeneity can increase or reduce the stress intensity factors. Comparing with the single crack solution, it can be shown that multiple cracking can reduce the stress intensity factor significantly.
机译:研究了功能梯度材料在瞬态机械载荷下的周期性裂纹阵列。考虑了反平面剪切载荷条件。推导了一个奇异积分方程,其中裂纹表面位移是未知函数。获得了数值结果,以说明在过渡状态或稳态下,对于不同材料非均质性值,应力强度因子随裂纹周期变化的变化。材料的不均匀性可以增加或减少应力强度因子。与单裂纹解决方案相比,可以证明多裂纹可以显着降低应力强度因子。

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