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Nonlinear static and dynamic responses of graphene platelets reinforced composite beam with dielectric permittivity

机译:石墨烯血小板增强复合梁具有介电介电常数的非线性静态和动态响应

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Nonlinear bending and forced vibration of graphene platelets (GPLs) reinforced composite (GPLRC) beam with dielectric permittivity are investigated. The tensile modulus and dielectric permittivity as required for structural analysis are obtained by using effective-medium theory (EMT) while Poisson's ratio and mass density are evaluated by rule of mixture. Based on Timoshenko beam theory, governing equations for nonlinear bending and forced vibration of the GPLRC beam are established and numerically solved through differential quadrature method (DQM). The dependency of the structural behaviours of the GPLRC beams on the attributes of GPL, applied external loading and electrical field are comprehensively studied. The analysis demonstrates that the performances of the GPLRC beam can be designed and actively tuned through adjusting several parameters. The bending and vibration behaviours of the beam are sensitive to smaller beam thickness, larger GPL aspect ratio and electrical voltage. Snap-through behaviour is observed for the bending and vibration of the composite beam within the involved AC frequency range. Reasons underlying the above observations are analysed and discussed to increasingly understand the structural behaviours of graphene reinforced composite structures with dielectric property. (C) 2019 Elsevier Inc. All rights reserved.
机译:研究了具有介电介电常数的石墨烯血小板(GPLS)增强复合物(GPLRC)光束的非线性弯曲和强制振动。通过使用有效介质理论(EMT)获得根据结构分析所需的拉伸模量和介电介电常数,而通过混合物的规则评估泊松比和质量密度。基于Timoshenko光束理论,通过差分正交方法(DQM)建立了GPLRC光束的非线性弯曲和强制振动的控制方程。 GPLRC光束对GPL,应用外部负载和电场属性的结构行为的依赖性被全面研究。该分析表明,通过调整若干参数,可以设计和主动调整GPLRC光束的性能。光束的弯曲和振动行为对较小的光束厚度敏感,更大的GPL纵横比和电压。对于涉及的AC频率范围内的复合梁的弯曲和振动,观察到快照行为。分析并讨论了上述观察结果的原因以越来越多地理解具有介电性的石墨烯增强复合材料结构的结构性。 (c)2019 Elsevier Inc.保留所有权利。

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