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Three-dimensional thermo-elastic analysis of a functionally graded cylindrical shell with piezoelectric layers by differential quadrature method

机译:梯度积分法分析压电梯度功能梯度圆柱壳的三维热弹性分析

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摘要

Three-dimensional thermo-elastic analysis of a functionally graded cylindrical shell with piezoelectric layers under the effect of asymmetric thermo-electro-mechanical loads is carried out. Numerical results of displacement, stress and thermal fields are obtained using two versions of the differential quadrature methods, namely polynomial and Fourier quadrature methods. Material properties of the shell are assumed to be graded in the radial direction according to a power law but the Poisson's ratio is assumed to be constant. Shells are considered to be under the effect of the pressure loading in the form of cosine and ring pressure loads, electric potentials and temperature fields. Numerical results for various boundary conditions are obtained and the effects of the thickness of piezoelectric layers, grading index of material properties and the ratio of the thickness to the radius of the shell on these results is presented.
机译:在不对称的热电机械载荷作用下,对具有压电层的功能梯度圆柱壳进行了三维热弹性分析。位移,应力和热场的数值结果是使用两种形式的微分正交方法获得的,即多项式和傅立叶正交方法。根据幂定律,假定壳体的材料特性在径向上是渐变的,但假定泊松比是恒定的。壳被认为处于余弦和环形压力载荷,电势和温度场形式的压力载荷的作用下。得到了各种边界条件的数值结果,并给出了压电层厚度,材料性能分级指数以及厚度与壳半径之比对这些结果的影响。

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