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Static and free vibration analysis of sandwich cylindrical shell based on theory of elasticity and using DQM

机译:基于弹性理论和DQM的夹层圆柱壳的静态和自由振动分析

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摘要

In this paper, static and free vibration analysis of a sandwich cylindrical shell is performed using theory of elasticity formulation. The core layer is made of functionally graded material with material properties varying along the thickness direction according to a simple power law. For the case of simply supported boundary conditions, equations of motion and equilibrium equations are solved analytically by applying a state-space technique along the radial direction and Fourier series expansion along the axial and circumferential direction. When boundary conditions are not simply supported, a semi-analytically solution is performed by using the differential quadrature method along the axial direction. The present approach is validated by comparing the obtained numerical results with those published in the available literature. Moreover, effects of boundary conditions, graded direction, mid-radius to thickness and length to mid-radius ratios on bending and vibration behavior are considered.
机译:在本文中,使用弹性制剂理论进行夹层圆柱壳的静态和自由振动分析。芯层由功能渐变的材料制成,其具有根据简单的电力法沿厚度方向变化的材料特性。对于简单地支持的边界条件,通过沿轴向和圆周方向沿径向和傅立叶串联膨胀施加状态空间技术,分析运动和平衡方程的方程。当不简单地支持边界条件时,通过使用沿轴向的差分正交方法来执行半分析解决方案。通过将获得的数值结果与在可用文献中发表的那些的数字结果进行比较来验证本方法。此外,考虑了边界条件,分级方向,半径到厚度和长度与中半径比的影响,对弯曲和振动行为的影响。

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