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Comparisons of nonlinear vibrations among pure polymer plate and graphene platelet reinforced composite plates under combined transverse and parametric excitations

机译:纯聚合物板和石墨烯血小板增强复合板在横向和参数激发下的非线性振动比较

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The comparative researches of the nonlinear vibrations are obtained among the pure polymer plate and three types of graphene platelet reinforced polymer composite plates under combined the transverse and parametric excitations. All edges of the pure polymer and graphene platelet reinforced polymer composite plates are simply supported. Both the uniform and functionally graded distribution forms of the graphene platelets are considered. The differential governing equations of motion for the pure polymer and graphene platelet reinforced polymer composite plates are derived based on the first-order shear deformation plate theory, von K?rm?n strain displacement relationship and Hamilton principle. The fourth-order Galerkin truncation is employed to discretize the partial differential governing equations of motion to four-degree-of-freedom nonlinear dynamical system. The natural frequencies of the first four vibration modes are examined for the pure polymer and graphene platelet reinforced polymer composite plates with different geometric characteristics. In order to compare the nonlinear vibrations of the prestressed pure polymer and prestressed graphene platelet reinforced polymer composite plates subjected to the transverse point excitation and in-plane uniaxial/biaxial excitations, the time histories, phase portraits and Poincare maps are presented. Some validated results are conducted to present the accuracy of the present approach. The effects of the distribution forms and weight fractions of the graphene platelets on the nonlinear vibrations for the graphene platelet reinforced polymer composite plates are investigated in detail. The research results demonstrate that the nonlinear vibration behaviors of the prestressed pure polymer plate under the complex excitations can be remarkably stabilized by the reinforcement of the graphene platelets.
机译:在组合横向和参数激发的纯聚合物板和三种类型的石墨烯血小板增强聚合物复合板中获得非线性振动的比较研究。简单地支持纯聚合物和石墨烯血小板增强聚合物复合板的所有边缘。考虑石墨烯血小板的均匀和功能梯度分布形式。基于一阶剪切变形板理论,推导出纯聚合物和石墨烯血小板增强聚合物复合板的差分测控方程,vonk≤n≤N菌株位移关系和汉密尔顿原则。第四阶Galerkin截断用于将运动的部分差分控制方程离散到自由度的四维非线性动力系统。为具有不同几何特性的纯聚合物和石墨烯血小板增强聚合物复合板检查前四种振动模式的自然频率。为了比较预应力的纯聚合物和预应力的石墨烯血小板增强聚合物复合板经受横向激发和面内单轴/双轴激励的预应力振动,提出了时间历史,相位肖像和庞的地图。进行一些验证的结果以呈现本方法的准确性。详细研究了石墨烯血小板对石墨烯血小板增强聚合物复合板的非线性振动的分布形式和重量分数的影响。研究结果表明,通过加固石墨烯血小板,可以显着稳定在复杂激发下的预应力纯聚合物板的非线性振动行为。

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