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Interface energy effect on electromechanical behavior of N piezoelectric cylindrical nano-inclusions in piezoelectric matrix

机译:界面能对压电基体中N个压电圆柱形纳米夹杂物的机电行为的影响

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摘要

Based on the electro-elastic surface/interface theory for nano-scale piezoelectric composites, the interface energy effect on the stress and electric displacement around N piezoelectric cylindrical nano-inclusions in piezoelectric matrix is investigated, and the matrix is subjected to an anti-plane shear stress and an in-plane electric field at infinity. Combining the complex variable method and stroth's formalism, the general solutions for the complex potentials in the piezoelectric matrix and inside the nano-inclusions are derived by using power series. To consider the interacting effect of interface energy between the nano-inclusions, the transform of Taylor series is introduced. A special case of two piezoelectric nano-inclusions is illustrated. Analyses show that the interaction between the interfaces of nano-inclusions exhibits significant effects on the electromechanical response. The elastic, piezoelectric and dielectric factors of interfaces express different effects on the distribution of electromechanical fields.
机译:基于纳米级压电复合材料的电弹性表面/界面理论,研究了界面能对压电基体中N个压电圆柱形纳米夹杂物周围的应力和电位移的影响,并使基体经受反平面作用剪切应力和无限远处的平面电场。结合复变量方法和斯特劳的形式主义,利用幂级数推导了压电基体和纳米包裹体内部复势的一般解。为了考虑纳米包裹体之间界面能的相互作用,引入了泰勒级数的变换。说明了两种压电纳米夹杂物的特例。分析表明,纳米包裹体界面之间的相互作用对机电响应表现出显着影响。界面的弹性,压电和介电系数对机电场的分布表现出不同的影响。

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