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Effect of axially functionally graded material on whirling frequencies and critical speeds of a spinning Timoshenko beam

机译:轴向功能梯度材料对Timoshenko旋转光束的回旋频率和临界速度的影响

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摘要

This paper studies the free vibration of an axially functionally graded beam spinning with constant angular speed about its longitudinal axis. Material properties of the beam are assumed to be varied continuously in the axial direction according to a power law. Its whirling frequencies, critical speeds, and mode shapes are obtained in order to investigate the influences of axially functionally graded material (FGM). Spinning Timoshenko beam model is employed to incorporate the effects of transverse shear, rotational inertia, and gyroscopic motion. A spectral-Tchebychev method is employed to derive the discrete governing equation and to solve the dynamic characteristics of the beam. Results show that the axially FGM has significant influences on the whirling frequencies, critical speeds, and mode shapes. But these influences depend on boundary condition, whirling mode, and slenderness ratio. For cantilever beams, by choosing appropriate material gradient index, higher whirling frequencies and critical speeds, compared to those of homogeneous beams, can be obtained. However, the superiority of axially FGM can't be observed in beams with clamped-clamped, clamped-pinned, and pinned-pinned boundary conditions. Their critical speeds are smaller than those of one corresponding homogeneous beam.
机译:本文研究了绕着其纵轴以恒定角速度旋转的轴向功能渐变光束的自由振动。假定梁的材料特性根据幂律在轴向上连续变化。获得其回旋频率,临界速度和振型,以便研究轴向功能梯度材料(FGM)的影响。旋转Timoshenko梁模型用于合并横向剪切,旋转惯性和陀螺运动的影响。频谱-切比雪夫方法用于导出离散控制方程并求解梁的动态特性。结果表明,轴向FGM对回旋频率,临界速度和振型有重大影响。但是这些影响取决于边界条件,旋转方式和细长比。对于悬臂梁,通过选择合适的材料梯度指数,与均质梁相比,可以获得更高的回旋频率和临界速度。但是,轴向FGM的优势在具有束缚,束缚和钉扎固定边界条件的梁中无法观察到。它们的临界速度小于一根相应的均匀光束的临界速度。

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