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Effect of couple stress at the interfaces of a nano-hole on the anti-plane electro-mechanical behavior

机译:纳米孔界面处的耦合应力对反平面机电行为的影响

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摘要

In piezoelectric nanocomposites, surface/interface plays an important role in determining the size-dependent behavior of media. Within the framework of couple stress, the effect of surface/interface around a nano-hole on the anti-plane electro-mechanical behavior is examined. By introducing a surface/interface model, the stress and electric displacement effects on the size-dependent behavior are both considered. The governing equations in piezoelectric materials are decoupled into the classical ones. The displacement and electric potential are expressed by Bessel functions. By satisfying the boundary conditions around the hole with the interface/ surface effect, the expanded coefficients are obtained. Through analysis, it is shown that the mechanical and electrical fields drastically depend on the relative size of the hole with respect to the characteristic length of the material. The effects of couple stresses on the stress and electric field are also addressed. Comparison with the existing results is also given.
机译:在压电纳米复合材料中,表面/界面在确定介质的尺寸依赖性行为中起着重要作用。在耦合应力的框架内,研究了纳米孔周围的表面/界面对反平面机电行为的影响。通过引入表面/界面模型,可以同时考虑应力和电位移对尺寸依赖性行为的影响。压电材料中的控制方程解耦为经典方程。位移和电势用贝塞尔函数表示。通过用界面/表面效应满足孔周围的边界条件,可以获得扩展系数。通过分析表明,机械和电场在很大程度上取决于孔相对于材料特征长度的相对大小。还讨论了耦合应力对应力和电场的影响。还与现有结果进行了比较。

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