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On a problem of the vibration of functionally graded conical shells with mixed boundary conditions

机译:具有混合边界条件的功能梯度圆锥壳的振动问题

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摘要

This paper presents a theoretical approach to solve vibration problems of functionally graded (FG) truncated conical shells under mixed boundary conditions. The material properties of FG shell are assumed to vary continuously through the thickness of the conical shell. The fundamental relations, motion and strain compatibility equations of FG truncated conical shells are derived by means of the Airy stress function method. Two cases of mixed boundary conditions are investigated. The basic equations are solved by using Galerkin method and fundamental cyclic frequencies of FG truncated conical shells are obtained. The results are compared and validated with the results available in the literature. The detailed parametric studies are carried out to investigate the influences of radius-to-thickness ratio, lengths-to-radius ratio, material composition and mixed boundary conditions on the fundamental cyclic frequencies of truncated conical shells.
机译:本文提出了一种解决混合边界条件下功能梯度(FG)截顶圆锥壳振动问题的理论方法。假设FG外壳的材料特性在圆锥形外壳的厚度范围内连续变化。利用艾里应力函数法推导了FG截顶圆锥壳的基本关系,运动和应变相容方程。研究了混合边界条件的两种情况。用Galerkin方法求解基本方程,得到FG截顶圆锥壳的基本循环频率。将结果与文献中的结果进行比较并验证。进行了详细的参数研究,以研究半径与厚度之比,长度与半径之比,材料成分和混合边界条件对截顶圆锥壳的基本循环频率的影响。

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