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Nonlinear resonance of FG multilayer beam-type nanocomposites: Effects of graphene nanoplatelet-reinforcement and geometric imperfection

机译:FG多层束型纳米复合材料的非线性共振:石墨烯纳米片增强和几何缺陷的影响

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In this paper, the nonlinear dynamic response of a FG multilayer beam-type nanocomposite reinforced with graphene nanoplatelet (GNP) by considering the initial geometric imperfection is investigated on the basis of nonlocal strain gradient Euler-Bernoulli beam theory. Four patterns of GNP distribution incorporating the uniform distribution (UD) and O-, X-, and A- FG pattern distributions are taken into account and the effective elastic properties of the beam-type nanocomposite are evaluated in the framework of Halpin-Tsai scheme. The first-order vibrational mode is employed to represent the initial geometric imperfection of the nonlinear FG beam-type nanocomposite. Correspondingly, the nonlinear amplitude-frequency response of the imperfect FG multilayer beam-type nanostructures subjected to the excitation resonance is analyzed with the aid of multiple scale method. Firstly, the present model is validated with a comparison of two previous works. Then, a comprehensive investigation is conducted to evaluate the effects of GNP distributed pattern, weight fraction of GNPs, geometric imperfection amplitude, boundary condition, excitation amplitude, nonlocal and strain gradient size scale parameters on the nonlinear frequency-response of FG multilayer beam-type nanostructures. The current work is beneficial for the application of GNP as reinforcement to enhance mechanical performances of nanostructures. (C) 2020 Elsevier Masson SAS. All rights reserved.
机译:本文基于非局部应变梯度Euler-Bernoulli梁理论,研究了考虑初始几何缺陷的石墨烯纳米片增强的FG多层梁型纳米复合材料的非线性动力响应。考虑了包含均匀分布(UD)和O-,X-和A-FG模式分布的GNP分布的四种模式,并在Halpin-Tsai方案的框架内评估了梁型纳米复合材料的有效弹性性能。一阶振动模式用于表示非线性FG束型纳米复合材料的初始几何缺陷。相应地,借助多尺度法分析了不完全的FG多层束型纳米结构在激发共振作用下的非线性幅频响应。首先,通过比较两个先前的工作来验证本模型。然后,进行了全面的研究,以评估GNP分布模式,GNP的重量分数,几何缺陷幅度,边界条件,激发幅度,非局部和应变梯度尺寸尺度参数对FG多层梁型非线性频率响应的影响。纳米结构。当前的工作对于将GNP用作增强纳米结构的机械性能的增强剂是有益的。 (C)2020年Elsevier Masson SAS。版权所有。

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