首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Free vibration analysis of rotating functionally graded material plate under nonlinear thermal environment using higher order shear deformation theory
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Free vibration analysis of rotating functionally graded material plate under nonlinear thermal environment using higher order shear deformation theory

机译:利用高阶剪切变形理论,非线性热环境下旋转功能分级材料板的自由振动分析

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摘要

In the present article, a higher order shear deformation theory is used to develop a finite element model for the free vibration analysis of a rotating functionally graded material plate in the thermal environment. The model is based on an eight-noded isoparametric element with seven degrees-of-freedom per node. The material properties are temperature dependent and graded along its thickness according to a simple power law distribution in terms of volume fraction of the constituents. The general displacement equation provides C ~(0)continuity, and the transverse shear strain undergoes parabolic variation through the thickness of the plate. Therefore, the shear correction factor is not used in this theory. The obtained results are compared with the published results in the literature to determine the accuracy of the method. The effects of various parameters like hub radius, rotation speed, aspect ratio, thickness ratio, volume fraction index, and temperature on the frequency of rotating plate are investigated.
机译:在本文中,更高阶的剪切变形理论用于开发用于热环境中旋转功能梯质材料板的自由振动分析的有限元模型。该模型基于八个点向期的等偶像元素,每个节点具有7度自由度。材料特性是温度依赖性,并根据成分体积分数的简单电力法分布,沿其厚度梯度梯度。一般位移方程提供C〜(0)连续性,横向剪切应变通过板的厚度经历抛物线变化。因此,在该理论中不使用剪切校正因子。将得到的结果与文献中的公开结果进行比较,以确定方法的准确性。研究了各种参数,如轮毂半径,旋转速度,纵横比,厚度比,体积分数指数和旋转板频率的温度的影响。

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