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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >On the snap-through instability of post-buckled FG-CNTRC rectangular plates with integrated piezoelectric layers
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On the snap-through instability of post-buckled FG-CNTRC rectangular plates with integrated piezoelectric layers

机译:具有集成压电层的后屈曲FG-CNTRC矩形板的快速捕捉不稳定性

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摘要

The present paper deals with postbuckling characteristics of carbon nanotube reinforced composite (CNTRC) rectangular plates with integrated piezoelectric layers subjected to in-plane compressive loads. The von Karman type of geometrical nonlinearity is taken into consideration to account for the large deformations of the plate. The dispersion of CNTs may be uniform or functionally graded and the distribution of electric potential across the thickness of piezoelectric layers is simulated by a combination of linear and sinusoidal functions. Generalized differential quadrature method is employed to discretize nonlinear stability equations, boundary conditions and Maxwell equation and then nonlinear system of equations is solved using a displacement control strategy. A comprehensive parametric study is presented to provide an insight into effects of CNT dispersion and volume fraction, geometrical parameters, type of in-plane load, boundary conditions, thickness of piezoelectric layers and external applied voltages on the postbuckling behaviors of the nanocomposite plate. It is shown that snap-through type of instability, which is known as secondary instability, occurs during postbuckling regime. It is revealed that both volume fraction and dispersion of the CNTs could affect the snap-through characteristics of the plate. It is found that snap-through instability is sensitive to thickness of the piezoelectric layers. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文研究了具有集成压电层的碳纳米管增强复合材料(CNTRC)矩形板在面内压缩载荷下的屈曲后特性。考虑到板的大变形,考虑了几何非线性的von Karman类型。 CNT的分散可以是均匀的或功能上渐变的,并且通过线性和正弦函数的组合来模拟整个压电层厚度上的电势分布。采用广义微分求积法离散非线性稳定方程,边界条件和麦克斯韦方程,然后采用位移控制策略求解非线性方程组。提出了一项全面的参数研究,以深入了解CNT的分散度和体积分数,几何参数,平面内载荷的类型,边界条件,压电层的厚度以及外部施加电压对纳米复合板后屈曲行为的影响。结果表明,在后屈曲过程中会发生卡扣型不稳定性,即所谓的二次不稳定性。结果表明,碳纳米管的体积分数和分散都可能影响板的快速吸附特性。发现搭接不稳定性对压电层的厚度敏感。 (C)2017 Elsevier B.V.保留所有权利。

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