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Evaluation of nonlocal higher order shear deformation models for the vibrational analysis of functionally graded nanostructures

机译:用于振动分析功能梯度纳米结构的非识别高阶剪切变形模型的评价

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摘要

Small scale effects in the functionally graded beam are investigated by using various nonlocal higher-order shear deformation beam theories. The material properties of a beam are supposed to vary according to power law distribution of the volume fraction of the constituents. The nonlocal equilibrium equations are obtained and an exact solution is presented for vibration analysis of functionally graded (FG) nanobeams. The accuracy of the present model is discussed by comparing the results with previous studies and a parametric investigation is presented to study the effects of power law index, small-scale parameter, and aspect ratio on the vibrational behavior of FG nanostructures.
机译:通过使用各种非本体高阶剪切变形光束理论研究了功能梯度光束中的小规模效果。 光束的材料特性应该根据组分体积分数的电力法分布而变化。 获得非局部平衡方程,并提出了精确的解决方案以进行功能梯度(FG)纳米辐射的振动分析。 通过将结果与先前研究的结果进行比较来讨论本模型的准确性,并提出了参数调查,以研究电力法指数,小规模参数和纵横比对FG纳米结构的振动行为的影响。

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