旋转石墨烯纳米片增强板在摩擦冲击和热冲击下振动特性的解析解

IF 1.7 4区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES
T. Zhao, Yu Xuan Wang, Honggang Pan, Xiang-sheng Gao, Yi Cai
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引用次数: 14

摘要

本文对旋转石墨烯纳米片(GPL)增强板在摩擦冲击和热冲击下的振动特性进行了分析研究。假设有效材料特性沿板的厚度方向连续平滑地变化,并通过Halpin–Tsai微观力学模型和混合物规则确定。考虑到陀螺效应,基于基尔霍夫板理论,采用汉密尔顿原理推导了运动方程。然后,利用Galerkin方法和小参数摄动方法,得到了旋转板的自由振动和强迫振动结果。通过详细的参数研究,考察了GPL的重量分数、分布模式、长厚比和长宽比以及转速对纳米复合板自由振动特性的影响。还注意了GPL重量分数、热流和摩擦系数对板的强迫振动响应的影响。所获得的结果可以在旋转GPL增强板结构的设计中发挥作用,以实现显著提高的机械性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical solution for vibration characteristics of rotating graphene nanoplatelet-reinforced plates under rub-impact and thermal shock
This article presents an analytical investigation on vibration characteristics of rotating graphene nanoplatelet (GPL)-reinforced plates subjected to rub-impact and thermal shock. The effective material properties are assumed to vary continuously and smoothly along the thickness direction of the plate and are determined via the Halpin–Tsai micromechanics model together with the rule of mixture. Considering the gyroscopic effect, the equations of motion are derived by adopting the Hamilton’s principle based on the Kirchhoff’s plate theory. Then, the Galerkin method and the small parameter perturbation method are utilized to obtain the free and forced vibration results for the rotating plate. A detailed parametric study is conducted to examine the effects of the GPL weight fraction, GPL distribution pattern, length-to-thickness ratio and length-to-width ratio of GPLs, and the rotating speed on free vibration characteristics of the nanocomposite plate. Attention is also given to the influences of the GPL weight fraction, thermal flow, and friction coefficient on forced vibration responses of the plate. The obtained results can play a role in the design of a rotating GPL-reinforced plate structure to achieve significantly improved mechanical performance.
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来源期刊
Advanced Composites Letters
Advanced Composites Letters 工程技术-材料科学:复合
自引率
0.00%
发文量
0
审稿时长
4.2 months
期刊介绍: Advanced Composites Letters is a peer reviewed, open access journal publishing research which focuses on the field of science and engineering of advanced composite materials or structures.
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