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Study on thermal buckling and post-buckling behaviors of FGM tubes resting on elastic foundations

机译:弹性地基上的FGM管的热屈曲和屈曲后行为研究

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This paper studies thermal buckling and post-buckling behaviors of functionally graded materials (FGM) tubes subjected to a uniform temperature rise and resting on elastic foundations via a refined beam model. Compared to the Timoshenko beam theory, the number of unknowns of this model are the same and no correction factors are required. The material properties of the FGM tube vary continuously in the radial direction according to a power function. Two ends of the tube are assumed to be simply supported and in-plane boundary conditions are immovable. Energy variation principle is employed to establish the governing equations. A two-step perturbation method is adopted to determine the critical thermal buckling loads and post-buckling paths of the tubes with arbitrary radial non-homogeneity. Through detailed parametric studies, it can be found that the tube has much higher buckling temperature and post-buckling strength when it is supported by an elastic foundation.
机译:本文研究了功能梯度材料(FGM)管在均匀升温下并通过细化梁模型位于弹性基础上的热屈曲和后屈曲行为。与Timoshenko束理论相比,该模型的未知数相同,并且不需要校正因子。 FGM管的材料特性根据功率函数在径向上连续变化。假定管的两端受到简单支撑,并且平面内边界条件不可移动。采用能量变化原理建立控制方程。采用两步摄动法确定任意径向非均匀性管的临界热屈曲载荷和屈曲后路径。通过详细的参数研究,可以发现,当管由弹性基础支撑时,其屈曲温度和屈曲后强度更高。

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