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Nonlinear free vibration analysis of elastically supported carbon nanotube-reinforced composite beam with the thermal environment in non-deterministic framework

机译:不确定框架下热环境下弹性支撑碳纳米管增强复合梁的非线性自由振动分析

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This paper deals with the investigation of nonlinear free vibration behavior of elastically supported carbon nanotube reinforced composite (CNTRC) beam subjected to thermal loading with random system properties. Material properties of each constituent’s material, volume fraction exponent and foundation parameters are considered as uncorrelated Gaussian random input variables. The beam is supported by a Pasternak foundation with Winkler cubic nonlinearity. The higher order shear deformation theory (HSDT) with von-Karman non-linearity is used to formulate the governing equation using Hamilton principle. Convergence and validation study is carried out through the comparison with the available results in the literature for authenticity and accuracy of the present approach used in the analysis. First order perturbation technique (FOPT),Second order perturbation technique (SOPT) and Monte Carlo simulation (MCS) methods are employed to investigate the effect of geometric configuration, volume fraction exponent, foundation parameters, distribution of reinforcement and thermal loading on nonlinear vibration characteristics CNTRC beam.The present work signifies the accurate analysis of vibrational behaviour influences by different random variables. Results are presented in terms of mean, variance (COV) and probability density function (PDF) for various aforementioned parameters.
机译:本文研究的是弹性负载碳纳米管增强复合材料(CNTRC)梁在热载荷作用下具有随机系统特性的非线性自由振动行为。每个成分的材料的材料特性,体积分数指数和基础参数都被视为不相关的高斯随机输入变量。梁由具有Winkler立方非线性的Pasternak基础支撑。利用具有von-Karman非线性的高阶剪切变形理论(HSDT),利用汉密尔顿原理来建立控制方程。通过与文献中可获得的结果进行比较,进行收敛性和验证性研究,以确保本分析方法的真实性和准确性。一阶扰动技术(FOPT),二阶扰动技术(SOPT)和蒙特卡罗模拟(MCS)方法用于研究几何构型,体积分数指数,基础参数,钢筋分布和热载荷对非线性振动特性的影响CNTRC梁。本工作标志着对不同随机变量对振动行为影响的准确分析。结果以各种上述参数的均值,方差(COV)和概率密度函数(PDF)表示。

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