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首页> 外文期刊>Steel & Composite Structures: An International Journal >Buckling of sandwich plates with FG-CNT-reinforced layers resting on orthotropic elastic medium using Reddy plate theory
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Buckling of sandwich plates with FG-CNT-reinforced layers resting on orthotropic elastic medium using Reddy plate theory

机译:使用雷德板理论依赖于正交弹性介质的FG-CNT加强层夹带夹层板

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摘要

Present paper deals with the temperature-dependent buckling analysis of sandwich nanocomposite plates resting on elastic medium subjected to magnetic field. The lamina layers are reinforced with carbon nanotubes (CNTs) as uniform and functionally graded (FG). The elastic medium is considered as orthotropic Pasternak foundation with considering the effects of thermal loading on the spring and shear constants of medium. Mixture rule is utilized for obtaining the effective material properties of each layer. Adopting the Reddy shear deformation plate theory, the governing equations are derived based on energy method and Hamilton's principle. The buckling load of the structure is calculated with the Navier's method for the simply supported sandwich nanocomposite plates. Parametric study is conducted on the combined effects of the volume percent and distribution types of the CNTs, temperature change, elastic medium, magnetic field and geometrical parameters of the plates on the buckling load of the sandwich structure. The results show that FGX distribution of the CNTs leads to higher stiffness and consequently higher buckling load. In addition, considering the magnetic field increases the buckling load of the sandwich nanocomposite plate.
机译:本文涉及夹层纳米复合材料依赖于磁场的弹性介质的温度依赖性屈曲分析。将薄层层用碳纳米管(CNT)加强,如均匀且功能梯度(FG)。弹性介质被认为是正向Pasternak基础,考虑到培养基的弹簧和剪切常数的热负荷的影响。混合规则用于获得每层的有效材料特性。采用Reddy剪切变形板理论,基于能量法和汉密尔顿原则来源的控制方程。使用Navier的简单支撑的夹心纳米复合材料板计算结构的屈曲负荷。参数研究是对CNT的体积%和分布类型的组合效果进行,在夹层结构的屈曲负荷上的CNT,温度变化,弹性介质,磁场和板的几何参数上进行。结果表明,CNT的FGX分布导致较高的刚度,从而提高屈曲负荷。另外,考虑磁场增加了夹层纳米复合板的屈曲负荷。

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