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An analytical study on wave propagation in functionally graded nano-beams/tubes based on the integral formulation of nonlocal elasticity

机译:基于非识别弹性整体配方的功能梯度纳米梁/管中波传播的分析研究

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摘要

In the context of integral formulation of Eringen's nonlocal elasticity theory, flexural, axial and shear wave propagations in nano-beams/tubes made of functionally graded materials (FGMs) are analytically studied. The nano-beams/tubes are modeled according to the Timoshenko beam theory whose governing equations are derived via Hamilton's principle. The nonlocal formulation is developed generally so that it can be adopted for arbitrary kernel functions. For the comparison aim, the differential counterpart of the formulation is also developed. Selected numerical results are presented to compare the predictions of the local model, differential nonlocal model and integral nonlocal model according to various types of the kernel function, made on the wave propagation characteristics of nano-beams/tubes. The small-scale influences on the dispersion curves of flexural, axial and shear waves are also studied for different nonlocal parameter-to-length and thickness-to-nonlocal parameter ratios. In addition, the wave frequencies are obtained for FGM nano-beams/tubes with different material gradient indexes.
机译:在eringen的非识别弹性理论的整体制剂的背景下,分析研究了由功能梯度材料(FGMS)制成的纳米梁/管中的弯曲,轴向和剪切波传播。纳米梁/管根据TIMOSHENKO光束理论进行建模,其管理方程通过Hamilton的原理推导出来。通常开发非局部制剂,使得可以采用任意内核功能。对于比较目标,还开发了配方的差分对应物。提出了选择的数值结果以比较根据纳米梁/管的波传播特性的各种类型的内核功能的局部模型,差分非局部模型和整体非局部模型的预测。还研究了对不同的非局部参数到长度和厚度与非局部参数比的弯曲,轴向和剪切波的色散曲线的小规模影响。另外,为具有不同材料梯度指标的FGM纳米梁/管获得波频。

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