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基于有限元技术的碳纤维-石墨烯增强混杂聚合物复合材料的振动分析

Vibration Analysis of Carbon Fiber-Graphene-Reinforced Hybrid Polymer Composites Using Finite Element Techniques.

作者信息

Georgantzinos Stelios K, Giannopoulos Georgios I, Markolefas Stylianos I

机构信息

Laboratory for Advanced Structures and Smart Systems, General Department, National and Kapodistrian University of Athens, 34400 Psachna, Greece.

Department of Mechanical Engineering, University of Peloponnese, 1 Megalou Alexandrou Street, 26334 Patras, Greece.

出版信息

Materials (Basel). 2020 Sep 23;13(19):4225. doi: 10.3390/ma13194225.

Abstract

In this study, a computational procedure for the investigation of the vibration behavior of laminated composite structures, including graphene inclusions in the matrix, is developed. Concerning the size-dependent behavior of graphene, its mechanical properties are derived using nanoscopic empiric equations. Using the appropriate Halpin-Tsai models, the equivalent elastic constants of the graphene reinforced matrix are obtained. Then, the orthotropic mechanical properties of a composite lamina of carbon fibers and hybrid matrix can be evaluated. Considering a specific stacking sequence and various geometric configurations, carbon fiber-graphene-reinforced hybrid composite plates are modeled using conventional finite element techniques. Applying simply support or clamped boundary conditions, the vibrational behavior of the composite structures are finally extracted. Specifically, the modes of vibration for every configuration are derived, as well as the effect of graphene inclusions in the natural frequencies, is calculated. The higher the volume fraction of graphene in the matrix, the higher the natural frequency for every mode. Comparisons with other methods, where it is possible, are performed for the validation of the proposed method.

摘要

在本研究中,开发了一种用于研究层合复合结构振动行为的计算程序,该结构包括基体中含有石墨烯夹杂物的情况。考虑到石墨烯的尺寸依赖性行为,其力学性能通过纳米经验方程推导得出。使用适当的Halpin-Tsai模型,获得了石墨烯增强基体的等效弹性常数。然后,可以评估碳纤维与混合基体复合层板的正交各向异性力学性能。考虑特定的堆叠顺序和各种几何构型,使用传统有限元技术对碳纤维-石墨烯增强混合复合板进行建模。应用简支或夹紧边界条件,最终提取复合结构的振动行为。具体而言,推导了每种构型的振动模式,并计算了石墨烯夹杂物对固有频率的影响。基体中石墨烯的体积分数越高,每种模式的固有频率越高。在可能的情况下,与其他方法进行比较以验证所提出的方法。

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