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A bigher-order spectral element for wave propagation analysis in functionally graded materials

机译:功能梯度材料中波传播分析的高阶谱元素

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摘要

A new higher-order spectral element (SE) is developed for wave propagation analysis of a functionally graded material (FGM) beam in the presence of thermal and mechanical loading. The element is based on first order shear deformation theory (FSDT) and takes into account the depthwise contraction due to Poisson's ratio. A new method of element formulation is employed, which is the most general one and devoid of all previous cumbersome wavenumber and wave amplitude computation. The beam can be subjected to temperature variation in depth direction. This variation is found by solving the one-dimensional heat conduction equation uncoupled from the elasticity equation. The effect of the computed temperature field is subsequently superimposed on the mechanical loading in the form of an equivalent nodal load. Numerical examples are directed towards highlighting the effect of the Poisson's contraction on the structural response and stress wave. The spectrum and the dispersion relation are studied in detail. The stress field generated by the element and its difference from the FSDT stress field is outlined. The response of an FGM beam to thermo-mechanical loading is analysed and the effect of thermal loading on the overall response is elicited.
机译:开发了一种新的高阶谱元素(SE),用于在存在热和机械载荷的情况下对功能梯度材料(FGM)光束进行波传播分析。该单元基于一阶剪切变形理论(FSDT),并考虑了由于泊松比引起的深度收缩。采用了一种新的元素公式化方法,这是最通用的方法,并且没有以前所有繁琐的波数和波幅计算。光束可以在深度方向上经受温度变化。通过求解与弹性方程解耦的一维热传导方程,可以找到这种变化。随后将计算出的温度场的影响以等效节点载荷的形式叠加在机械载荷上。数值示例旨在突出泊松收缩对结构响应和应力波的影响。详细研究了光谱和色散关系。概述了由元素生成的应力场及其与FSDT应力场的区别。分析了FGM梁对热机械载荷的响应,并得出了热载荷对整体响应的影响。

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