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Nonlinear vibration of functionally graded porous variable thickness toroidal shell segments surrounded by elastic medium including the thermal effect

机译:功能梯度多孔可变厚度环形壳段的非线性振动,弹性介质包括热效应

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摘要

The present study deals with the nonlinear vibration of functionally graded porous (FGP) variable thickness toroidal shell segments surrounded by elastic medium subjected to axial compression and external pressure, including the thermal effects. Three types of uniform, symmetric, and non-symmetric porosity distributions are considered. The improved Donnell shell theory with von-Karman nonlinearity, and Stein and McElman's assumptions are used to obtain the equations of motion of toroidal shell segments. The dynamic characteristics of shells such as natural frequencies and nonlinear frequency-amplitude relation are determined by using the solution in terms of displacements in conjunction with Galerkin's method. The present approach is validated by comparing with the available results for particular cases. Effects of geometrical characteristics, the porosity distribution types, the porosity coefficient, the thickness distribution parameter, temperature and pre-loaded static axial compression on the nonlinear vibration response of the FGP variable thickness convex and concave toroidal shell segments are studied in detail.
机译:本研究涉及功能上梯度多孔(FGP)可变厚度环形壳体壳体的非线性振动,其由经受轴向压缩和外部压力的弹性介质包围,包括热效应。考虑了三种类型的均匀,对称和非对称孔隙度分布。利用von-Karman非线性的改进的Donnell Shell理论,以及Stein和Mcelman的假设用于获得环形壳段的运动方程。通过在与Galerkin的方法结合使用的位移方面使用解决方案来确定诸如固有频率和非线性频率幅度关系的壳的动态特性。通过与特定情况的可用结果进行比较来验证本方法。几何特征,孔隙率分布类型,孔隙率系数,厚度分布参数,温度和预装静态轴向压缩对FGP可变厚度凸起和凹环壳段的非线性振动响应的影响。

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