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Stochastic Finite element analysis of the free vibration of functionally graded material plates

机译:功能梯度材料板自由振动的随机有限元分析

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The superior properties of functionally graded materials (FGM) are usually accompanied by randomness in their properties due to difficulties in tailoring the gradients during manufacturing processes. Using the stochastic finite element method (SFEM) proved to be a powerful tool in studying the sensitivity of the static response of FGM plates to uncertainties in their material properties. This tool is yet to be used in studying free vibration of FGM plates. The aim of this work is to use both a First Order Reliability Method (FORM) and the Second Order Reliability Method (SORM), combined with a nine-noded isoparametric Lagrangian element based on the third order shear deformation theory to investigate sensitivity of the fundamental frequency of FGM plates to material uncertainties. These include the effect of uncertainties on both the metal and ceramic constituents. The basic random variables include ceramic and metal Young’s modulus and Poisson’s ratio, their densities and ceramic volume fraction. The developed code utilizes MATLAB capabilities to derive the derivatives of the stiffness and mass matrices symbolically with a considerable reduction in calculation time. Calculating the eigenvectors at the mean values of the variables proves to be a reasonable simplification which significantly increases solution speed. The stochastic finite element code is validated using available data in the literature, in addition to comparisons with results of the well-established Monte Carlo simulation technique with importance sampling. Results show that SORM is an excellent rapid tool in the stochastic analysis of free vibration of FGM plates, when compared to the slower Monte Carlo simulation techniques.
机译:功能梯度材料(FGM)的优越性能通常伴随着其性能的随机性,这是由于在制造过程中难以调整梯度所致。事实证明,使用随机有限元方法(SFEM)是研究FGM板的静态响应对其材料特性不确定性的敏感性的有力工具。该工具尚未用于研究FGM板的自由振动。这项工作的目的是使用一阶可靠性方法(FORM)和二阶可靠性方法(SORM),并结合基于三阶剪切变形理论的九节点等参拉格朗日元素,以研究基本面的灵敏度。 FGM板的频率对材料不确定性的影响。这些包括不确定性对金属和陶瓷成分的影响。基本随机变量包括陶瓷和金属的杨氏模量和泊松比,它们的密度和陶瓷体积分数。开发的代码利用MATLAB功能以象征性的方式导出刚度和质量矩阵的导数,从而大大减少了计算时间。在变量的平均值处计算特征向量被证明是一种合理的简化,大大提高了求解速度。随机有限元代码通过使用文献中的可用数据进行验证,此外还可以与已建立的具有重要度采样的蒙特卡洛模拟技术的结果进行比较。结果表明,与较慢的蒙特卡洛模拟技术相比,SORM是FGM板自由振动随机分析的出色快速工具。

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