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首页> 外文期刊>Acta Mechanica >Thermoelastic analysis of rotating laminated functionally graded cylindrical shells using layerwise differential quadrature method
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Thermoelastic analysis of rotating laminated functionally graded cylindrical shells using layerwise differential quadrature method

机译:旋转层压功能梯度圆柱壳的热弹性分析的分层微分求积法

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An accurate and efficient solution procedure based on the elasticity theory is employed to investigate the thermoelastic behavior of rotating laminated functionally graded (FG) cylindrical shells in thermal environment. The material properties are assumed to be temperature dependent and graded in the thickness direction. In order to accurately model the variation of the field variables across the thickness, the shell is divided into a set of mathematical layers. The differential quadrature method (DQM) is adopted to discretize the governing differential equations of each layer together with the related boundary and compatibility conditions at the interface of two adjacent layers. Using the DQM enables one to accurately and efficiently discretize the partial differential equations, especially along the graded direction, and also implement the boundary and compatibility conditions in their strong forms. After demonstrating the convergence and accuracy of the presented approach, the effects of material and geometrical parameters and also temperature dependence of material properties on the stresses and displacement components of rotating laminated FG cylindrical shells are studied.
机译:基于弹性理论的一种准确而有效的求解程序被用来研究旋转层压功能梯度(FG)圆柱壳在热环境中的热弹性行为。假定材料属性与温度有关,并在厚度方向上分级。为了准确地模拟整个厚度范围内的场变量的变化,将壳体划分为一组数学层。采用差分正交方法(DQM)离散化每一层的控制微分方程,以及两个相邻层的界面处的相关边界和相容条件。使用DQM可以使人们准确,有效地离散偏微分方程,尤其是沿梯度方向离散,并以强形式实现边界和相容条件。在证明了所提出方法的收敛性和准确性之后,研究了材料和几何参数以及材料性能的温度依赖性对旋转层压FG圆柱壳的应力和位移分量的影响。

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