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Deformations and stresses in annular disks made of functionally graded materials subjected to internal and/or external pressure

机译:功能梯度材料制成的环形盘在受到内部和/或外部压力的作用下的变形和应力

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摘要

In this paper, an analytical solution is developed to determine deformations and stresses in circular disks made of functionally graded materials subjected to internal and/or external pressure. Taking mechanical properties of the materials of circular disks to be linear variations, the governing equation is derived from basic equations of axisymmetric, plane stress problems in elasticity. By transforming the governing equation into a hypergeometric equation, an accurate analytical solution of deformations and stresses in circular disks is obtained. The comparison with the numerical solution indicates that both approaches give very agreeable results, indicating correctness of the proposed analytical solution. The obtained analytical solution is employed to determine the radial displacement and stresses in circular disks subjected to external pressure, internal pressure, and internal and external pressure, respectively. How the radius ratio of circular disks affects deformations and stresses is also investigated. Keywords Circular disks - Functionally graded materials - Internal and/or external pressure - Elastic analytical solution
机译:在本文中,开发了一种解析解决方案来确定功能梯度材料制成的承受内部和/或外部压力的圆盘的变形和应力。以圆盘材料的机械性能为线性变化,该控制方程式是从轴对称弹性中的平面应力问题的基本方程式得出的。通过将控制方程转换为超几何方程,可以获得圆盘形变和应力的精确解析解。与数值解的比较表明,两种方法都给出了非常令人满意的结果,表明了所提出的解析解的正确性。所获得的分析解决方案用于确定圆盘的径向位移和应力,圆盘分别承受外部压力,内部压力以及内部和外部压力。还研究了圆盘的半径比如何影响变形和应力。圆盘-功能梯度材料-内部和/或外部压力-弹性分析溶液

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