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Bending and vibration analysis of functionally graded trapezoidal nanocomposite plates reinforced with graphene nanoplatelets (GPLs)

机译:石墨烯纳米片(GPL)增强的功能梯度梯形纳米复合板的弯曲和振动分析

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This paper investigates the bending and vibration behaviors of a novel class of functionally graded trapezoidal plates reinforced with graphene nanoplatelets (GPLs) by employing the finite element method. Modified Halpin-Tsai model and the rule of mixture are used to determine the effective material properties including Young's modulus, mass density and Poisson's ratio of the nanocomposites. A comprehensive parametric study is conducted to examine the effects of the distribution, concentration and dimension of GPL and the plate geometry on the static and dynamic behaviors of GPL reinforced functionally graded trapezoidal plates. The results demonstrate that adding a small amount of GPLs as reinforcing nanofillers can significantly enhance the stiffness of the plate and the most effective reinforcing effect can be achieved by distributing more GPLs with a larger surface area near the top and bottom surfaces of the plate. Also, the bending and vibration behaviors of trapezoidal plates with such a distribution pattern are more sensitive to the GPL weight fraction and plate geometry compared to the other distribution patterns. Moreover, it is found that the static and dynamic deflections of the plate tend to be lower as either of the two base angles becomes smaller. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文通过有限元方法研究了一类新型的功能梯度梯形板,该梯形板由石墨烯纳米片(GPL)增强。修改后的Halpin-Tsai模型和混合规则用于确定有效的材料性能,包括纳米复合材料的杨氏模量,质量密度和泊松比。进行了全面的参数研究,以检查GPL的分布,浓度和尺寸以及板几何形状对GPL增强功能梯度梯形板的静态和动态行为的影响。结果表明,添加少量GPL作为增强纳米填料可以显着提高板的刚度,并且可以通过在板的顶部和底部表面附近分配较大表面积的GPL来实现最有效的增强效果。而且,与其他分布图案相比,具有这种分布图案的梯形板的弯曲和振动行为对GPL重量分数和板几何形状更敏感。此外,发现随着两个底角中的任何一个变小,板的静态和动态挠度趋于降低。 (C)2017 Elsevier Ltd.保留所有权利。

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