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首页> 外文期刊>Journal of intelligent material systems and structures >A nonlocal strain gradient theory for rotating thermo-mechanical characteristics on magnetically actuated viscoelastic functionally graded nanoshell
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A nonlocal strain gradient theory for rotating thermo-mechanical characteristics on magnetically actuated viscoelastic functionally graded nanoshell

机译:用于旋转热机械特性的非局部应变梯度理论在磁致动粘弹性功能梯度纳米瓶中的热机械特性

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摘要

In this article, a first-order shear deformable model is expanded based on the nonlocal strain gradient theory to vibration analysis of smart nanostructures under different boundary conditions. The governing equations of motion of rotating magneto-viscoelastic functionally graded cylindrical nanoshell in the magnetic field and corresponding boundary conditions are obtained using Hamilton's principle. To discretize the equations of motion, the generalized differential quadrature method is applied. The aim of this work is to investigate the effects of the temperature changes, nonlocal parameter, material length scale, viscoelastic coefficient, various boundary conditions, and the rotational speed of this smart structure on natural frequencies of rotating cylindrical nanoshell made of magneto-viscoelastic functionally graded material.
机译:在本文中,基于非局部应变梯度理论扩展了一阶剪切可变形模型,以在不同边界条件下的智能纳米结构的振动分析。使用Hamilton原理获得旋转磁场上旋转磁场功能梯度圆柱形圆柱形纳米型纳米孔的控制方程。为了使运动方程分开,应用广义差分正交方法。这项工作的目的是研究温度变化,非局部参数,材料长度,粘弹性系数,各种边界条件,以及这种智能结构的各种边界条件的影响旋转圆柱形纳米型在功能上的旋转圆柱形纳米孔的固有频率分级材料。

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