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Thermal buckling and postbuckling of functionally graded graphene-reinforced composite laminated plates resting on elastic foundations

机译:功能梯度石墨烯增强复合层压板在弹性基础上的热屈曲和后屈曲

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This paper presents the modeling and analysis for the thermal postbuckling of graphene-reinforced composite laminated plates resting on an elastic foundation and subjected to in-plane temperature variation. A micromechanical model is used to estimate the temperature-dependent material properties of the graphene-reinforced composites (GRCs). Piece-wise functionally graded (FG) GRC layers along the thickness direction of a plate is considered in this study. Employing the higher order shear deformation plate theory, the governing equations for FG-GRC plates are derived and the effects of plate-foundation interaction and temperature variation are included in the modeling. A two-step perturbation technique is applied to obtain the buckling temperature and the thermal postbuckling load-deflection curves for perfect and imperfect FG-GRC laminated plates. The results show that the buckling temperature as well as thermal postbuckling strength of the plates can be increased as a result of the functionally graded graphene reinforcement for the plates.
机译:本文介绍了基于石墨烯增强的复合层压板在弹性基础上承受面内温度变化的热后屈曲的建模和分析。使用微机械模型来估计石墨烯增强复合材料(GRC)的温度相关材料性能。在这项研究中考虑了沿板厚度方向的分段功能梯度(FG)GRC层。利用高阶剪切变形板理论,推导了FG-GRC板的控制方程,并在模型中包括了板-基础相互作用和温度变化的影响。应用两步摄动技术获得了完美和不完善的FG-GRC层压板的屈曲温度和屈曲后的热变形曲线。结果表明,由于功能梯度的石墨烯增强板,可以提高板的屈曲温度以及热后屈曲强度。

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