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Surface stress size dependency in nonlinear free oscillations of FGM quasi-3D nanoplates having arbitrary shapes with variable thickness using IGA

机译:表面应力尺寸依赖性的非线性自由振荡与使用IgA具有可变厚度的任意形状的非线性自由振荡依赖性

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摘要

The present study aims to propose a computational package for analyzing the geometrically nonlinear large amplitude vibrations of nanoplates having arbitrary shapes with variable thickness in the presence of surface stress type of size effect. Accordingly, isogeometric analysis (IGA) is employed to achieve exact geometrical description as well as higher-order efficient smoothness with no meshing difficulty. The associated size dependent plate model is constructed for the first time via implementation of the Gurtin-Murdoch surface elasticity to a quasi-3D plate model having the capability to take the thickness stretching into consideration with only four variables. The nanoplates are assumed made of functionally graded materials (FGMs) through the variable thickness, the displacement along which is calculated independently via a trigonometric normal shape function. The variation of plate thickness obeys three different schemes including linear, concave, and convex ones. It is highlighted that by changing the pattern of the thickness variation from convex type to linear one, and then from linear type to concave one, in spite of the higher classical flexural stiffness, the surface elastic-based flexural stiffness of FGM composite nanoplates gets lower, which results in a lower nonlinear frequency corresponding to a very thin nanoplates. Moreover, it is portrayed that by increasing the value of material gradient index, the role of stiffer character of the surface stress in the nonlinear free oscillation behavior of FGM composite nanoplates is pronounced. This anticipation is the same for the both initial and deeper parts of the nonlinear frequency-deflection response.
机译:本研究旨在提出一种计算包装,用于分析具有在表面应力类型的表面应力类型的存在下具有可变厚度的任意形状的纳米间形状的几何非线性大振幅振动。因此,采用异诊测分析(IGA)来实现精确的几何描述以及高阶高效平滑,没有啮合难度。通过将Gurtin-Merdoch表面弹性的实施方式首次构建相关的尺寸相关板模型,以使具有厚度伸展的Quasi-3d板模型以仅以四个变量考虑厚度。通过可变厚度,通过可变厚度,沿着功能渐变的材料(FGMS)制成,通过三角正常形状函数独立地计算纳米板。板厚度遵循三种不同方案的变化,包括线性,凹形和凸起。突出显示,通过将凸面类型的厚度变化的图案改变为线性型,然后从线性类型到凹入的模式,尽管具有较高的经典弯曲刚度,FGM复合纳米间电压板的表面弹性基弯曲刚度变得更低,这导致与非常薄的纳米板对应的较低的非线性频率。此外,描绘了通过增加材料梯度指数的值,发音为FGM复合纳米间电镀素的非线性自由振荡行为中的表面应力的变硬特性的作用。对于非线性频率偏转响应的初始和更深部分的两个预期相同。

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