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Dynamic buckling of functionally graded cylindrical thin shells under non-periodic impulsive loading

机译:非周期性冲击载荷作用下功能梯度圆柱薄壳的动态屈曲

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摘要

In this paper, a formulation for the buckling of cylindrical thin shells made of functionally graded material (FGM) composed of ceramic and metal subjected to external pressure varying as a power function of time is presented. The properties are graded in the thickness direction according to a volume fraction power-law distribution. The modified Donnell type dynamic stability and compatibility equations are obtained using Love’s shell theory. Applying Galerkin’s method and then applying a Ritz type variational method to these equations for different initial conditions and taking large values of the loading parameters into consideration, analytic solutions are obtained for critical parameter values. The results show that the critical parameters are affected by the configurations of the constituent materials, loading parameters variations and the power of time in the external pressure expression variations. Comparing the results with those in the literature validates the present analysis.
机译:在本文中,提出了一种由功能梯度材料(FGM)制成的圆柱薄壳屈曲的公式,该功能梯度材料由陶瓷和金属组成,它们承受的外部压力随时间的幂函数而变化。根据体积分数幂律分布在厚度方向上对性能分级。修改后的Donnell型动力稳定性和相容性方程是使用Love的壳理论获得的。应用Galerkin方法,然后针对不同的初始条件,对这些方程式应用Ritz型变分方法,并考虑较大的加载参数值,从而获得关键参数值的解析解。结果表明,关键参数受组成材料的配置,载荷参数变化和外部压力表达变化的时间影响。将结果与文献中的结果进行比较可验证本分析。

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  • 来源
    《Acta Mechanica》 |2003年第4期|151-163|共13页
  • 作者

    A. H. Sofiyev;

  • 作者单位

    Department of Civil Engineering of Suleyman Demirel University;

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  • 正文语种 eng
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