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首页> 外文期刊>Journal of Sound and Vibration >STABILITY OF A CANTILEVER BEAM WITH TIP MASS SUBJECT TO AXIAL SINUSOIDAL EXCITATIONS
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STABILITY OF A CANTILEVER BEAM WITH TIP MASS SUBJECT TO AXIAL SINUSOIDAL EXCITATIONS

机译:轴正弦激励作用下具有悬臂梁的悬臂梁的稳定性

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摘要

The equation of motion of a cantilever beam with a tip mass subject to axial sinusoidal excitations at the clamped end is derived based on Hamilton's principle and the assumed mode method. The effects of axial sinusoidal excitation of the axial displacement, velocity or acceleration at the clamped end on the stability of the beam are then examined by using Bolotin's method. The respective regions of instability are determined by converting the resulting equations of boundary frequencies to the standard form of a generalized eigenvalue problem. Instability regions for various combinations of tip mass and amplitudes of the sinusoidal axial excitations in terms of displacement, velocity, and acceleration are presented. [References: 12]
机译:基于汉密尔顿原理和假定的模态方法,推导了具有受夹持端轴向正弦激励的尖端质量的悬臂梁的运动方程。然后使用Bolotin方法检查轴向正弦激励对轴向位移,速度或加速度的影响,从而对梁的稳定性产生影响。通过将所得的边界频率方程式转换为广义特征值问题的标准形式,可以确定各个不稳定性区域。给出了在位移,速度和加速度方面,尖端质量和正弦轴向激励振幅的各种组合的不稳定性区域。 [参考:12]

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