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Thermal effects on nonlinear dynamic characteristics of polymer-CNT-fiber multiscale nanocomposite structures

机译:热对聚合物-CNT-纤维多尺度纳米复合结构非线性动力学特性的影响

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摘要

In the present study, nonlinear dynamic response of polymer-CNT-fiber multiscale nanocomposite plate resting on elastic foundations in thermal environments using the finite element method is performed. In this regard, the governing equations are derived based on Inverse Hyperbolic Shear Deformation Theory and von Karman geometrical nonlinearity. Three type of distribution of temperature through the thickness of the plate namely, uniform linear and nonlinear are considered. The considered element is C1-continuous with 15 DOF at each node. The effective material properties of the multiscale composite are calculated using Halpin-Tsai equations and fiber micromechanics in hierarchy. The carbon nanotubes are assumed to be uniformly distributed and randomly oriented through the epoxy resin matrix. Five types of impulsive loads are considered, namely the step, sudden, triangular, half-sine and exponential pulses. After examining the validity of the present work, the effects of the weight percentage of SWCNTs and MWCNTs, nanotube aspect ratio, volume fraction of fibers, plate aspect, temperature, elastic foundation parameters, distribution of temperature and shape of impulsive load on nonlinear dynamic response of CNT reinforced multi-phase laminated composite plate are studied in details.
机译:在本研究中,利用有限元方法,对热环境中基于弹性基础的聚合物-CNT-纤维多尺度纳米复合板的非线性动力响应进行了研究。在这方面,基于反双曲剪切变形理论和von Karman几何非线性推导了控制方程。考虑通过板厚度的三种温度分布,即均匀的线性和非线性。所考虑的元素是C1连续的,每个节点的DOF为15。使用Halpin-Tsai方程和层次结构中的纤维微力学来计算多尺度复合材料的有效材料性能。假定碳纳米管均匀分布并且通过环氧树脂基质无规取向。考虑了五种类型的脉冲负载,即阶跃脉冲,突然脉冲,三角脉冲,半正弦脉冲和指数脉冲。在检查了当前工作的有效性之后,SWCNT和MWCNT的重量百分比,纳米管长宽比,纤维的体积分数,板长宽比,温度,弹性基础参数,温度分布和脉冲载荷的形状对非线性动力响应的影响详细研究了碳纳米管增强多相层压复合板的结构。

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