Pasternak弹性地基包围FG阶跃锥形壳的动力分析

L. Q. Vĩnh, N. Cuong
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引用次数: 0

摘要

本文提出了一种连续单元模型,用于求解具有不同材料特性的、被帕斯捷尔纳克地基包围的FG阶跃锥形壳的振动问题。基于一阶剪切变形理论(FSDT)和FGM锥形壳的方程,得到了壳体各段等厚的动刚度矩阵。为了分析FG阶跃截锥壳的动力学行为,采用连续单元法的趣味装配程序进行分段连接,并采用连续单元法的趣味装配程序进行分段连接。研究了弹性基础上不同构型FG阶梯截锥形壳的自由振动。讨论了结构参数、阶梯厚度和弹性基础对FG阶梯截锥形壳自由振动的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic analysis of FG stepped truncated conical shells surrounded by Pasternak elastic foundations
This research presents a continuous element model for solving vibration problems of FG stepped truncated conical shells having various material properties and surrounded by Pasternak foundations. Based on the First Order Shear Deformation Theory (FSDT) and the equations of the FGM conical shells, the dynamic stiffness matrix is obtained for each segment of the shell having constant thickness. The interesting assembly procedure of continuous element method (CEM) is employed for joining those segments in order to analyze the dynamic behavior of the FG stepped truncated conical shells an assembly procedure of continuous element method (CEM) is employed for joining those segments. Free vibrations of different configurations of FG stepped truncated conical shells on elastic foundations are examined. Effects of structural parameters, stepped thickness and elastic foundations on the free vibration of FG stepped truncated conical shells are also presented.
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