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Wave propagation of a functionally graded beam in thermal environments

机译:功能梯度光束在热环境中的波传播

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In this paper, the effect of material-temperature dependent on the wave propagation of a cantilever beam composed of functionally graded material (FGM) under the effect of an impact force is investigated. The beam is excited by a transverse triangular force impulse modulated by a harmonic motion. Material properties of the beam are temperature-dependent and change in the thickness direction. The Kelvin-Voigt model for the material of the beam is used. The considered problem is investigated within the Euler-Bernoulli beam theory by using energy based finite element method. The system of equations of motion is derived by using Lagrange's equations. The obtained system of linear differential equations is reduced to a linear algebraic equation system and solved in the time domain and frequency domain by using Newmark average acceleration method. In order to establish the accuracy of the present formulation and results, the comparison study is performed with the published results available in the literature. Good agreement is observed. In the study, the effects of material distributions and temperature rising on the wave propagation of the FGM beam are investigated in detail.
机译:在本文中,研究了材料温度对冲击力作用下取决于功能梯度材料(FGM)的悬臂梁波传播的影响。通过由谐波运动调制的横向三角力脉冲来激发光束。梁的材料属性取决于温度,并且会在厚度方向上发生变化。使用梁材料的Kelvin-Voigt模型。通过使用基于能量的有限元方法,在Euler-Bernoulli梁理论中研究了所考虑的问题。运动方程组是通过使用拉格朗日方程导出的。将得到的线性微分方程组简化为线性代数方程组,并通过Newmark平均加速度法在时域和频域求解。为了确定本发明配方和结果的准确性,将比较研究与文献中的公开结果进行比较。观察到良好的一致性。在研究中,详细研究了材料分布和温度升高对FGM束波传播的影响。

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