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Free vibration analysis of FGM cylindrical shell partially resting on Pasternak elastic foundation with an oblique edge

机译:FGM圆柱壳部分地靠在Pasternak弹性基础上并有斜边的自由振动分析

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摘要

The free vibration characteristics of FGM cylindrical shells partially resting on elastic foundation with an oblique edge are investigated by an analytical method. The cylindrical shell is partially surrounded by an elastic foundation which is represented by the Pasternak model. An edge of an elastic foundation lies in a plane that is oblique at an angle with the shell axis. The motion of shell is represented based on the first order shear deformation theory (FSDT) to account for rotary inertia and transverse shear strains. The functionally graded cylindrical shell is composed of stainless steel and silicon nitride. Material properties vary continuously through the thickness according to a four-parameter power law distribution in terms of volume fraction of the constituents. The equation of motion for eigenvalue problem is obtained using Rayleigh-Ritz method and variational approach. To validate the present method, the numerical example is presented and compared with the available existing results.
机译:通过解析方法研究了部分靠斜边的弹性地基上的FGM圆柱壳的自由振动特性。圆柱壳部分被以Pasternak模型表示的弹性基础包围。弹性地基的边缘位于与壳体轴倾斜的平面中。基于一阶剪切变形理论(FSDT)来表示壳的运动,以说明旋转惯性和横向剪切应变。功能梯度圆柱壳由不锈钢和氮化硅组成。材料特性根据成分的体积分数,根据四参数幂定律分布在厚度上连续变化。利用瑞利-里兹方法和变分方法获得了特征值问题的运动方程。为了验证本方法,给出了数值示例并将其与可用的现有结果进行比较。

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