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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Nonlinear free vibration analysis of thermally induced FG-CNTRC annular plates: Asymmetric versus axisymmetric study
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Nonlinear free vibration analysis of thermally induced FG-CNTRC annular plates: Asymmetric versus axisymmetric study

机译:热诱导FG-CNTRC环形板的非线性自由振动分析:不对称与轴对称研究

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摘要

Due to axisymmetric fundamental vibrational mode shape, the most studies on the large-amplitude free vibration of annular plates have been presented based on the axisymmetric formulation. However, the initial thermal loading can change the vibration behavior of annular plates. To analyze this effect, the nonlinear free vibration of carbon nanotube (CNT) reinforced composite annular plates is investigated under thermal loading based on the asymmetric formulation. The material properties of the CNT-reinforced composites are assumed to vary continuously along the thickness direction and estimated through a micromechanical model by which the temperature-dependency is taken into account. The governing equations are derived on the basis of first-order shear deformation theory, and an efficient numerical variational method is employed to solve the problem. In this regard, the quadratic form of the energy functional is directly discretized using numerical differential and integral operators, and the pseudoarc length continuation method is then applied to find the frequency response of the structure. The numerical results of asymmetric and axisymmetric formulations are compared and it is observed that in the presence of initial thermal loading, the axisymmetric analysis leads to inaccurate results and complete asymmetric formulation should be considered. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于轴对称的基本振动模态,基于轴对称公式,对环形板大振幅自由振动的研究最多。但是,初始热负荷会改变环形板的振动性能。为了分析这种影响,基于不对称公式,研究了碳纳米管增强复合材料环形板在热载荷下的非线性自由振动。假设CNT增强复合材料的材料特性沿厚度方向连续变化,并通过考虑温度依赖性的微机械模型进行估算。根据一阶剪切变形理论推导了控制方程,并采用有效的数值变分方法解决了该问题。在这方面,能量函数的二次形式可以使用数值微分和积分算子直接离散化,然后使用伪弧长连续法求出结构的频率响应。比较了不对称和轴对称配方的数值结果,发现在存在初始热载荷的情况下,轴对称分析导致结果不准确,应考虑使用完整的不对称配方。 (C)2017 Elsevier B.V.保留所有权利。

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