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An approximate spectral element model for the dynamic analysis of an FGM bar in axial vibration

机译:FGM杆轴向振动动力分析的近似谱元模型

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摘要

As FGM (functionally graded material) bars which vibrate in axial or longitudinal direction have great potential for applications in diverse engineering fields, developing a reliable mathematical model that provides very reliable vibration and wave characteristics of a FGM axial bar, especially at high frequencies, has been an important research issue during last decades. Thus, as an extension of the previous works (Hong et al. 2014, Hong and Lee 2015) on three-layered FGM axial bars (hereafter called FGM bars), an enhanced spectral element model is proposed for a FGM bar model in which axial and radial displacements in the radial direction are treated more realistic by representing the inner FGM layer by multiple sub-layers. The accuracy and performance of the proposed enhanced spectral element model is evaluated by comparison with the solutions obtained by using the commercial finite element package ANSYS. The proposed enhanced spectral element model is also evaluated by comparison with the author's previous spectral element model. In addition, the effects of Poisson's ratio on the dynamics and wave characteristics in example FGM bars are numerically investigated.
机译:由于沿轴向或纵向振动的FGM(功能梯度材料)棒材具有在各种工程领域中应用的巨大潜力,因此开发出一种可靠的数学模型,为FGM轴向棒材提供了非常可靠的振动和波动特性,尤其是在高频下。在过去的几十年中一直是一个重要的研究问题。因此,作为先前关于三层FGM轴向钢筋(以下称为FGM钢筋)的工作(Hong等,2014; Hong和Lee,2015)的扩展,提出了一种改进的谱元模型用于FGM钢筋模型,其中轴向通过用多个子层表示内部的FGM层,可以更真实地处理沿径向的径向位移和径向位移。通过与使用商业有限元软件包ANSYS获得的解决方案进行比较,评估了所提出的增强频谱元素模型的准确性和性能。通过与作者先前的光谱元素模型进行比较,还对提出的增强光谱元素模型进行了评估。另外,数值研究了示例FGM钢筋中泊松比对动力学和波动特性的影响。

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