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首页> 外文期刊>Computational Materials Science >Effect of material inhomogeneity on electromechanical behaviors of functionally graded piezoelectric spherical structures
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Effect of material inhomogeneity on electromechanical behaviors of functionally graded piezoelectric spherical structures

机译:材料不均匀性对功能梯度压电球形结构机电行为的影响

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摘要

Based on the three-dimensional linear piezoelectric theory, the elastic analysis is carried out for functionally graded, radially polarized piezoelectric spherical structure subjected to mechanical and electrical loads. The material properties are assumed to be exponential function of the radial position. Frobenius series method is employed to solve the second-order ordinary differential equation with variable coefficient and the closed-form displacement solution is obtained. The obtained solution converges very quickly and is convenient to treat in analyzing the electromechanical fields in the exponentially graded piezoelectric (EGP) hollow sphere subjected to different mechanical and electric loads. The presented numerical results show that the material inhomogeneity has a significant influence on the electromechanical behaviors of the EGP spherical structures.
机译:基于三维线性压电理论,对功能梯度,径向极化的压电球形结构在机械和电气载荷作用下进行了弹性分析。假定材料属性是径向位置的指数函数。采用Frobenius级数法求解变系数二阶常微分方程,得到封闭形式的位移解。所获得的溶液收敛速度非常快,并且在分析承受不同机械和电力负荷的指数梯度压电(EGP)空心球中的机电场时非常方便进行处理。数值结果表明,材料的不均匀性对EGP球形结构的机电行为具有重大影响。

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