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Free vibration analysis of a rotating non-uniform functionally graded beam

机译:旋转非均匀功能梯度梁的自由振动分析

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In this paper, free vibration characteristics of a rotating double tapered functionally graded beam is investigated. Material properties of the beam vary continuously through thickness direction according to the power-law distribution of the volume fraction of the constituents. The governing differential equations of motion are derived using the Hamilton's principle and solved utilizing an efficient and semi-analytical technique called the Differential Transform Method (DTM). Several important aspects such as taper ratios, rotational speed, hub radius, as well as the material volume fraction index which have impacts on natural frequencies of such beams are investigated and discussed in detail. Numerical results are tabulated in several tables and figures. In order to demonstrate the validity and accuracy of the current analysis, some of present results are compared with previous results in the literature and an excellent agreement is observed. It is showed that the natural frequencies of an FG rotating double tapered beam can be obtained with high accuracy by using DTM. It is also observed that nondimensional rotational speed, height taper ratio, power-law exponent significantly affect the natural frequencies of the FG double tapered beam while the effects of hub radius and breadth taper ratio are negligible.
机译:在本文中,研究了旋转双锥形功能梯度梁的自由振动特性。光束的材料特性根据成分的体积分数的幂律分布在厚度方向上连续变化。控制运动的微分方程是根据汉密尔顿原理导出的,并利用一种称为微分变换法(DTM)的高效半解析技术进行了求解。研究并讨论了影响锥束固有频率的几个重要方面,例如锥度比,转速,轮毂半径以及材料体积分数指数。数值结果列在几个表和图中。为了证明当前分析的有效性和准确性,将一些当前结果与文献中的先前结果进行了比较,并观察到了很好的一致性。结果表明,使用DTM可以高精度地获得FG旋转双锥光束的固有频率。还观察到,无量纲的旋转速度,高度锥度比,幂律指数显着影响FG双锥束的固有频率,而轮毂半径和宽度锥度比的影响可忽略不计。

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