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Static and free vibration analysis of functionally graded carbon nanotube reinforced skew plates

机译:功能梯度碳纳米管增强斜板的静,自由振动分析

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The remarkable mechanical and sensing properties of carbon nanotubes (CNTs) suggest that they are ideal candidates for high performance and self-sensing composites. However, the study of CNT-based composites is still under development. This paper provides results of static and dynamic numerical simulations of thin and moderately thick functionally graded (FG-CNTRC) skew plates with uniaxially aligned reinforcements. The shell element is formulated in oblique coordinates and based on the first-order shear deformation plate theory. The theoretical development rests upon the Hu Washizu principle. Independent approximations of displacements (bilinear), strains and stresses (piecewise constant subregions) provide a consistent mechanism to formulate an efficient four-noded skew element with a total of twenty degrees of freedom. An invariant definition of the elastic transversely isotropic tensor is employed based on the representation theorem. The FG-CNTRC skew plates are studied for a uniform and three different distributions (two symmetric and one asymmetric) of CNTs. Detailed parametric studies have been carried out to investigate the influences of skew angle, CNT volume fraction, thickness-to-width ratio, aspect ratio and boundary conditions. In addition, the effects of fiber orientation are also examined. The obtained results are compared to the FE commercial package ANSYS and the limited existing bibliography with good agreement. (C) 2015 Elsevier Ltd. All rights reserved.
机译:碳纳米管(CNT)出色的机械和传感性能表明,它们是高性能和自感应复合材料的理想选择。然而,基于CNT的复合材料的研究仍在发展中。本文提供了具有单轴对齐钢筋的薄和中厚功能梯度(FG-CNTRC)斜板的静态和动态数值模拟结果。根据一阶剪切变形板理论,将壳单元公式化为斜坐标。理论上的发展基于胡和izu的原则。位移(双线性),应变和应力(分段恒定子区域)的独立近似值提供了一种一致的机制,可以制定一个有效的四节点偏斜元素,共具有20个自由度。基于表示定理,采用弹性横向各向同性张量的不变定义。研究了FG-CNTRC斜板,以获取均匀且三种不同分布(两个对称和一个不对称)的CNT。已经进行了详细的参数研究,以研究偏斜角,CNT体积分数,厚度与宽度之比,纵横比和边界条件的影响。另外,还研究了纤维取向的影响。将获得的结果与有限元商业软件包ANSYS和有限的现有书目进行比较,并具有很好的一致性。 (C)2015 Elsevier Ltd.保留所有权利。

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