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On the dynamic behavior of a piezoelectric-elastic laminate with a crack in the piezoelectric material under electro-mechanical loads

机译:机电载荷下压电材料中具有裂纹的压电弹性层压板的动力学行为

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摘要

The dynamic behavior of a piezoelectricelastic laminate with a crack in the piezoelectric material under in-plane steady-state electro-mechanical loads is considered. Based on the use of integral transform techniques, the problem is reduced to a set of singular integral equations, which are solved using Chebyshev polynomial expansions. Numerical results are provided to show the variation of both the dynamic stress intensity factors and electric displacement intensity factor with frequencies of the applied electro-mechanical loads. A phenomenon similar to “resonance” is observed when the applied loads act in some specific ranges of frequencies, and both the dynamic stress intensity factors and electric displacement intensity factor may increase significantly, which will lead to the failure of piezoelectric material. The effects of applied electric fields, crack geometry and elastic layer thickness on the phenomenon are also discussed.
机译:考虑了在面内稳态机电负载下压电材料中出现裂纹的压电弹性层压板的动态行为。基于积分变换技术的使用,该问题被简化为一组奇异积分方程,可使用Chebyshev多项式展开来求解。数值结果显示了动应力强度因子和电位移强度因子随所施加的机电负载的频率的变化。当施加的负载在某些特定频率范围内作用时,会观察到类似于“共振”的现象,并且动应力强度因子和电位移强度因子都可能显着增加,这将导致压电材料的失效。还讨论了施加的电场,裂纹几何形状和弹性层厚度对该现象的影响。

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