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首页> 外文期刊>International Journal of Fracture >Analysis of a crack In a finite thermopiezoelectric plate under heat flux
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Analysis of a crack In a finite thermopiezoelectric plate under heat flux

机译:热流作用下有限热压电板的裂纹分析

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摘要

The mechanical and electric fields in a finite thermopiezoelectric plate containing an isolated crack are formulated by applications of the Stroh's formulism and conformal transformation. The general form of the solution is constructed consisting of a holomorphic part in terms of Laurent series of each mapping planes, and a nonholomorphic part in integral form due to the crack. The approximate solution is obtained by least square method for a rectangular plate in which supplementary functions are introduced concerning its four corners for the purpose of accelerating the convergency of the Laurent series. The coefficients of the Laurent series of the solution, both for thermal field and electro-mechanical field, are exhibited for a crack problem, and the accuracy of the approximation is explored subsequently. The stress and electric displacement (SED) intensity factors are given for varying the plate size and the crack site. For specified crack length, considerable enhancement of SED intensity factors may be attained as the plate size increases owing to the mechanical and electric fields formed under uniform heat flow.
机译:通过应用Stroh公式和保形变换,可以确定包含孤立裂纹的有限热压电板中的机械和电场。该解决方案的一般形式由每个映射平面的Laurent级组成的全同性部分和由于裂纹而处于整体形式的非全同性部分组成。对于矩形板,通过最小二乘法求出近似解,在该矩形板上引入有关四个角的辅助函数,以加快Laurent级数的收敛性。针对裂纹问题显示了溶液的Laurent级数的系数(包括热场和机电场),随后探讨了逼近的准确性。给出了应力和电位移(SED)强度因子,用于改变板尺寸和裂纹部位。对于指定的裂纹长度,由于在均匀的热流下形成的机械和电场,随着板尺寸的增加,可以实现SED强度因子的显着提高。

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