Free vibration analysis of simply-supported graphene platelets reinforced laminated piezoelectric cylindrical micro-shells

F. Abbaspour
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引用次数: 1

Abstract

Abstract In this study, the micro-scale vibration analysis of the graphene platelets reinforced cylindrical micro-shells with piezoelectric layers is discussed. By simultaneous use of Hamilton’s principle and size-dependent modified couple stress theory, the governing equations of motion and the boundary conditions are derived. The natural frequencies for graphene platelets reinforced cylindrical micro-shell with piezoelectric layers are determined by the Navier’s approach. Three different graphene platelets distribution pattern are modeled in this study. The material properties of every layer of micro composite shell reinforced by graphene platelets are evaluated by Halpin–Tsai model. The present findings are validated with the available data in the literature. In addition, a parametric study is conducted to demonstrate the effects of the weight fraction, the distribution pattern, the material length scale parameter, the thickness of the piezoelectric layers, the length to radius ratio, the thickness to radius ratio, temperature change and the applied voltage on the natural frequency of piezoelectric GPL cylindrical micro-shell.
简支石墨烯片增强层压圆柱微壳的自由振动分析
摘要本研究讨论了石墨烯片增强带有压电层的圆柱微壳的微尺度振动分析。同时利用Hamilton原理和尺寸相关修正耦合应力理论,导出了运动控制方程和边界条件。带有压电层的石墨烯薄片增强圆柱微壳的固有频率由Navier的方法确定。本研究模拟了三种不同的石墨烯薄片分布模式。采用Halpin-Tsai模型对石墨烯片增强微复合材料每层壳的材料性能进行了评价。目前的研究结果得到了文献中现有数据的验证。此外,通过参数化研究,论证了重量分数、分布模式、材料长度尺度参数、压电层厚度、长半径比、厚半径比、温度变化和外加电压对压电GPL圆柱微壳固有频率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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