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首页> 外文期刊>International journal of structural stability and dynamics >Free Vibration and Elastic Critical Load of Functionally Graded Material Thin Cylindrical Shells Under Internal Pressure
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Free Vibration and Elastic Critical Load of Functionally Graded Material Thin Cylindrical Shells Under Internal Pressure

机译:内部压力下功能渐变材料薄圆柱壳的自由振动和弹性临界负荷

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摘要

An analytical approach for predicting the free vibration and elastic critical load of functionally graded material (FGM) thin cylindrical shells filled with internal pressured fluid is presented in this study. The vibration of the FGM cylindrical shell is described by the Flagge shell theory, where the internal static pressure is considered as the prestress term in the shell equations. The motion of the internal fluid is described by the acoustic wave equation. The natural frequencies of the FGM cylindrical shell under different internal pressures are obtained with the wave propagation method. The relationship between the internal pressure and the natural frequency of the cylindrical shell is analyzed. Then the linear extrapolation method is employed to obtain the elastic critical load of the FGM cylindrical shell from the condition that the increasing pressure has resulted in zero natural frequency. The accuracy of the present method is verified by comparison with the published results. The effects of gradient index, boundary conditions and structural parameters on the elastic critical load of the FGM cylindrical shell are discussed. Compared with the experimental and numerical analyses based on the external pressure, the present method is simple and easy to carry out.
机译:本研究提出了一种预测功能梯度(FGM)填充内压流体的自由振动和弹性临界载体的分析方法。 FGM圆柱壳的振动由峰值壳理论描述,其中内部静压被认为是壳体方程中的预应力项。声波方程描述了内部流体的运动。利用波传播方法获得FGM圆柱形壳体在不同内部压力下的自然频率。分析内部压力与圆柱壳的固有频率之间的关系。然后采用线性外推方法从增加压力导致零自然频率的条件获得FGM圆柱形壳的弹性临界负荷。通过与已发布结果进行比较来验证本方法的准确性。讨论了梯度指数,边界条件和结构参数对FGM圆柱形壳体弹性临界负荷的影响。与基于外部压力的实验和数值分析相比,本方法简单易于执行。

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