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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Thermal post-buckling and nonlinear vibration analysis of FGM beams based on physical neutral surface and high order shear deformation theory
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Thermal post-buckling and nonlinear vibration analysis of FGM beams based on physical neutral surface and high order shear deformation theory

机译:基于物理中性面和高阶剪切变形理论的FGM梁热后屈曲和非线性振动分析

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摘要

Thermal post-buckling and nonlinear vibration behaviors of FGM beams are analyzed by using concept of physical neutral surface, von Kármán strain-displacement relationships and high order shear deformation theory. Material properties are assumed to be temperature dependent and vary along the thickness. The prominent character of physical neutral surface higher-order shear deformation beam theory is that stretching-bending couplings are eliminated in constitutive equations, and governing equations have the similar forms as homogeneous isotropic beams. Approximate solutions are given out by Ritz method, and influences played by different supported boundaries, thermal environmental conditions and volume fraction index are discussed in detail.
机译:利用物理中性面的概念,vonKármán应变-位移关系和高阶剪切变形理论分析了FGM梁的热后屈曲和非线性振动行为。假定材料属性取决于温度,并且会随厚度变化。物理中性面高阶剪切变形梁理论的显着特点是消除了本构方程中的拉伸-弯曲耦合,并且控制方程具有与均质各向同性梁相似的形式。通过Ritz方法给出了近似解,并详细讨论了不同支持边界,热环境条件和体积分数指数的影响。

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