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Wave dispersion characteristics of embedded graphene platelets-reinforced composite microplates

机译:嵌入石墨烯血小板增强复合材料微孔板的波分散特性

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The present paper includes an analytical approach to study the wave propagation answers of microplates reinforced with graphene platelets (GPLs). Here, a uniform distribution of GPLs is regarded. Moreover, the equivalent modulus of elasticity is calculated for a composite plate in the framework of Halpin-Tsai model. Also, the effective values of density and Poisson's ratio are achieved applying relations of mixture rule. Kinematic equations are derived by employing the relations of classical plate theory (CPT). Then, by means of Hamilton's principle, local equations of motion are developed. Furthermore, the obtained Euler-Lagrange equations are solved by using an analytical solution. Finally, the effect of all contributor parameters will be reviewed presenting some diagrams.
机译:本文包括一种分析方法,用于研究用石墨烯血小板(GPLS)加固的微孔板的波传播答案。 这里,认为GPLS的统一分布被认为是。 此外,在Halpin-Tsai模型框架中计算了相同的弹性模量。 此外,达到了密度和泊松比的有效值,达到了混合规则的关系。 通过采用经典板理论(CPT)的关系来源的运动方程。 然后,通过汉密尔顿的原理,开发了局部运动方程。 此外,通过使用分析溶液来解决所获得的欧拉拉格朗朗方程。 最后,将审查所有贡献者参数的效果呈现一些图表。

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