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Frequency and mode veering phenomena of axially functionally graded non-uniform beams with nonlocal residuals

机译:具有局部残差的轴向功能梯度非均匀梁的频率和模式转向现象

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A Timoshenko beam model for axially functionally graded (FG) non-uniform nanobeams with nonlocal residuals is developed. Eringen's nonlocal theory of linear elasticity is used to model the effects of the nonlocal residuals on the natural frequencies and mode shapes of the FG nanobeam. The derived model is numerically solved using Chebyshev spectral collocation method. With the Chebyshev method, the discretization of a system of partial differential equations with variable coefficients can be easier performed and implemented. The derived model and solution are harnessed to study, for the first time, the eigen-value loci veering and mode veering phenomena for axially functionally graded non-uniform nanobeams with nonlocal residuals. It is demonstrated that there is a threshold value for the beam size at which frequency veering and mode shape veering may take place. This veering behavior is discovered in graded beams due to the material and geometry grading and the nonlocal residuals. In addition to these contributions, a parametric study on the beam size, material, and geometry effects on the natural frequencies and mode shapes of axially FG non-uniform nonlocal-beams is performed. This study can be used for design and optimization of different nano-devices made of FG materials. (C) 2016 Elsevier Ltd. All rights reserved.
机译:建立了具有非局部残差的轴向功能梯度(FG)非均匀纳米束的Timoshenko光束模型。 Eringen的线弹性非局部理论用于模拟非局部残差对FG纳米束的固有频率和振型的影响。使用Chebyshev频谱配置方法对导出的模型进行数值求解。使用Chebyshev方法,可以更容易地实现和实现具有可变系数的偏微分方程组的离散化。首次利用导出的模型和解决方案来研究具有非局部残差的轴向功能梯度非均匀纳米束的特征值轨迹转向和模式转向现象。已经证明,对于波束大小存在阈值,在该阈值处可能发生频率转向和模式形状转向。由于材料和几何渐变以及非局部残差,在渐变梁中​​发现了这种转向行为。除这些贡献外,还对光束尺寸,材料和几何形状对轴向FG非均匀非局部光束的固有频率和振型进行了参数研究。这项研究可用于设计和优化由FG材料制成的不同纳米器件。 (C)2016 Elsevier Ltd.保留所有权利。

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