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首页> 外文期刊>Zeitschrift fur Angewandte Mathematik und Mechanik >An improved displacement boundary condition of piezoelectric cantilever beams
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An improved displacement boundary condition of piezoelectric cantilever beams

机译:压电悬臂梁位移边界条件的改进

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摘要

Based on the linear piezoelectric theory, three kinds of displacement boundary conditions are used to study the deformations of piezoelectric cantilever beams. The first two conditions are conventional simplified displacement boundary conditions, and the third one is an improved boundary condition determined by the least-squares method. Two load cases and six slenderness ratios of cantilever beams are investigated. Solutions are given by both the conventional boundary conditions and the improved boundary condition, and are then compared with solutions by finite element method. Results from the improved boundary condition are found to be much better than those from the conventional displacement boundary conditions especially for short beams. Among the three displacement boundary conditions of the fixed end, the boundary condition determined by the least-squares method is proved to be the most effective boundary condition. (C) 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
机译:基于线性压电理论,利用三种位移边界条件研究压电悬臂梁的变形。前两个条件是常规的简化位移边界条件,第三个条件是通过最小二乘法确定的改进边界条件。研究了两种悬臂梁的荷载工况和六个细长比。同时给出了常规边界条件和改进边界条件的解,然后与有限元方法的解进行了比较。发现改进的边界条件的结果比常规位移边界条件的结果要好得多,尤其是对于短梁。在固定端的三个位移边界条件中,最小二乘法确定的边界条件被证明是最有效的边界条件。 (C)2015 WILEY-VCH Verlag GmbH&Co.KGaA,Weinheim

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