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Anti-plane electro-elastic fields in an infinite matrix with N coated-piezoelectric inclusions

机译:N包覆压电包裹体的无限基质中的反平面电弹性场

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摘要

Electro-elastic fields in an infinite matrix with N coated-piezoelectric inclusions are studied based on the complex variable method. Based on the assumption that the coated inclusions are completely bounded the matrix which is subjected to remote anti-plane shears and in-plane electric fields, the general solutions for complex potentials are first derived for arbitrary arrays of inclusions. Then, the numerical results are obtained for special cases in which the inclusions are located in different ways. Discussions are made about the influence of the coating thickness, the array type of inclusions and the material properties on the interface stresses and electric displacements in the matrix. It is found that both the array types of inclusions and the Young's modulus of the three-phase material system have remarkable effects on stresses, but not on electric displacements, while the piezoelectric constants of the coating and its thickness have significant effects on electric displacements, but not on stresses.
机译:基于复变量法研究了具有N个包覆压电包裹体的无限基质中的电弹性场。基于以下假设:涂覆的夹杂物完全包围了受到远程反平面剪切和面内电场作用的基质,首先针对任意阵列的夹杂物推导了复势的一般解。然后,针对夹杂物以不同方式定位的特殊情况获得了数值结果。讨论了涂层厚度,夹杂物的排列类型和材料性能对基体中界面应力和电位移的影响。发现三相材料系统中夹杂物的排列类型和杨氏模量均对应力产生显着影响,而对电位移没有显着影响,而涂层的压电常数及其厚度对电位移具有显着影响,但不是压力很大。

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