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NURBS-based isogeometric thermal postbuckling analysis of temperature dependent graphene reinforced composite laminated plates

机译:基于NURBS的温度依赖性石墨烯增强复合材料层压板的等几何热后屈曲分析

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摘要

A thermal postbuckling analysis for composite laminated plates reinforced with graphene sheets is performed in this research. All of the thermomechanical properties of the composite media are assumed to be temperature dependent. Volume fraction of the graphene in each layer is assumed to be different which results in a piecewise functionally graded plate. Based on the third order shear deformation plate theory of Reddy, the total strain energy of the plate is obtained. Composite laminated plate is assumed to be under uniform temperature rise. Properties of the graphene reinforced composite media are estimated by means of a refined Haptin-Tsai approach which contains efficiency parameters to capture the size dependency of the constituents. Afterwards, a non-uniform rational B-spline (NURBS) based isogeometric finite element method is implemented to study the thermal postbuckling response of the graphene reinforced composite laminated plates. Thermally induced postbuckling curves of the composite plate reinforced by graphene are provided for different functionally graded patterns, aspect ratios, side to thickness ratios and boundary conditions. It is shown that, FG-X pattern of graphene reinforcement results in the highest critical buckling temperature and the lowest postbuckling deflection.
机译:本研究对石墨烯片增强的复合层压板进行了热屈曲后分析。假定复合介质的所有热机械性质都与温度有关。假定每层中石墨烯的体积分数是不同的,这导致了分段的功能梯度板。基于Reddy的三阶剪切变形板理论,获得了板的总应变能。假设复合层压板的温度上升均匀。通过改进的Haptin-Tsai方法估算石墨烯增强复合材料的性能,该方法包含可捕获组分尺寸依赖性的效率参数。然后,基于非均匀有理B样条(NURBS)的等几何有限元方法被用来研究石墨烯增强复合材料层压板的热后屈曲响应。提供了石墨烯增强的复合板的热诱导屈曲后曲线,用于不同的功能梯度图案,长宽比,边厚比和边界条件。结果表明,石墨烯增强的FG-X模式导致最高的临界屈曲温度和最低的屈曲后挠曲。

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