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Thermoelastic Analysis of Rotating Functionally Graded Truncated Conical Shell by the Methods of Polynomial Based Differential Quadrature and Fourier Expansion-Based Differential Quadrature

机译:多项式差分正交与傅立叶膨胀基差分正交方法旋转功能梯度截断锥形壳的热弹性分析

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摘要

This paper focuses on the three-dimensional (3D) asymmetric problem of functionally graded (FG) truncated conical shell subjected to thermal field and inertia force due to the rotating part. The FG properties are assumed to be varied along the thickness according to power law distribution, whereas Poisson’s ratio is assumed to be constant. On the basis of 3D Green-Lagrange theory in general curvilinear coordinate, the fundamental equations are formulated and then two versions of differential quadrature method (DQM) including polynomial based differential quadrature (PDQ) and Fourier expansion-based differential quadrature (FDQ) are applied to discretize the resulting differential equations. The reliability of the present approach is validated by comparing with known literature where good agreement is reached using considerably few grid points. The effects of different mechanical boundary conditions, temperature fields, rotating angular speed, and shell thickness on the distributions of stress components and displacement in thickness direction for both axisymmetric and asymmetric cases are graphically depicted.
机译:本文侧重于功能渐变(FG)截圆壳的三维(3D)不对称问题,其由于旋转部件而受到热场和惯性力的截圆壳。假设FG性能沿着电力法分布沿厚度变化,而泊松比被认为是恒定的。在一般曲线坐标中的3D绿色拉格朗日理论的基础上,施加了基本方程,然后应用了包括多项式基于差分正交(PDQ)和傅立叶扩展基差分正交(FDQ)的两个差分正交方法(DQM)的两个版本为了使所得到的微分方程离散。通过与已知文献进行比较,验证了本方法的可靠性,其中使用很少的网格点达到良好的一致性。描绘了不同机械边界条件,温度场,旋转角速度和壳体厚度对应力分量和轴对称方向上的厚度方向上的位移的影响。

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