Analytical Solution for Whirling Speeds and Mode Shapes of a Distributed-Mass Shaft With Arbitrary Rigid Disks.

Journal of Applied Mechanics Pub Date : 2014-03-01 Epub Date: 2013-09-19 DOI:10.1115/1.4024670
Jong-Shyong Wu, Foung-Tang Lin, Huei-Jou Shaw
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引用次数: 17

Abstract

The purpose of this paper is to present an approach for replacing the effects of each rigid disk mounted on the spin shaft by a lumped mass together with a frequency-dependent equivalent mass moment of inertia so that the whirling motion of a rotating shaft-disk system is similar to the transverse free vibration of a stationary beam and the technique for the free vibration analysis of a stationary beam with multiple concentrated elements can be used to determine the forward and backward whirling speeds, along with mode shapes of a distributed-mass shaft carrying arbitrary rigid disks. Numerical results reveal that the characteristics of whirling motions are significantly dependent on the slopes of the associated natural mode shapes at the positions where the rigid disks are located. Furthermore, the results obtained from the presented analytical method and those obtained from existing literature or the finite element method (FEM) are in good agreement.

Abstract Image

Abstract Image

任意刚盘分布质量轴的转速和振型解析解。
本文的目的是提供一种方法代替每一个刚性的影响磁盘安装在自旋轴由一个集中质量和频率相关等效质量惯性矩的旋转运动旋转shaft-disk系统类似于一个固定梁的横向自由振动的技术固定梁的自由振动分析多个集中元素可以用来确定向前和向后旋转速度,以及承载任意刚性圆盘的分布质量轴的模态振型。数值结果表明,旋转运动的特性显著依赖于相关的自然模态振型在刚盘位置的斜率。分析结果与已有文献或有限元法的结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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