Characteristics of Self-excited Vibration of Vertical Rotating Shaft System Considering Amplitude dependent Nonlinearity of Sliding Bearing

IF 1.9 4区 工程技术 Q2 ACOUSTICS
Y. Watanabe, T. Inoue
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引用次数: 1

Abstract

Journal sliding bearings are often used to support rotating machinery to add damping and increase load capacity. These bearings have strong nonlinearities that can cause vibration problems. Various studies have been conducted on vibration phenomena caused by nonlinearities in journal sliding bearings. However, most of these studies have been on horizontally supported rotating machines. Some of these techniques are difficult to apply to vertically supported rotating machines. The most significant difference between horizontal and vertical support is that the weight of the rotor does not act on the journal sliding bearing in the case of vertical support. Therefore, it is not appropriate to use the horizontal journal sliding bearing theory based on the equilibrium point for the vertical shaft, but rather, it should be considered based on the whirling orbit. In this paper, the nonlinear rotor dynamics of vertical rotating machines with journal sliding bearings are investigated and evaluated by theoretical and numerical analyses and experiments of a simple vertical rotating shaft. As a result, some new destabilization and stabilization phenomena are found in the vertical shaft system, and it is clarified that they can not be predicted by the conventional linear analysis around equilibrium point, but can be predicted by the nonlinear dynamical analysis of whirling orbit. Particularly, these destabilization and stabilization phenomena of vertical shaft system are strongly affected by the magnitude of the vibration in the journal sliding bearing due to its nonlinearity, and the unbalance of the rotating body can be a parameter to control them.
考虑滑动轴承幅值非线性的垂直转轴系统自激振动特性
滑动轴承通常用于支持旋转机械,以增加阻尼和增加负载能力。这些轴承具有很强的非线性,可能导致振动问题。对滑动轴承非线性引起的振动现象进行了各种研究。然而,这些研究大多是在水平支撑的旋转机器上进行的。其中一些技术很难应用于垂直支撑的旋转机器。水平支承和垂直支承之间最显著的区别是,在垂直支承的情况下,转子的重量不作用于轴颈滑动轴承。因此,对立轴采用基于平衡点的水平滑动轴承理论是不合适的,而应考虑基于旋转轨道的滑动轴承理论。本文通过理论分析、数值分析和简单垂直转轴的实验,研究并评价了含滑动轴承的垂直旋转机械的非线性转子动力学。结果表明,在立轴系统中发现了一些新的失稳和稳定现象,并阐明了这些现象不能用传统的平衡点周围线性分析来预测,而可以用旋转轨道的非线性动力学分析来预测。特别是,由于轴颈滑动轴承的非线性特性,立式轴系的这些失稳现象受其振动大小的强烈影响,而旋转体的不平衡可以作为控制它们的一个参数。
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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来源期刊
CiteScore
4.20
自引率
11.80%
发文量
79
审稿时长
7 months
期刊介绍: The Journal of Vibration and Acoustics is sponsored jointly by the Design Engineering and the Noise Control and Acoustics Divisions of ASME. The Journal is the premier international venue for publication of original research concerning mechanical vibration and sound. Our mission is to serve researchers and practitioners who seek cutting-edge theories and computational and experimental methods that advance these fields. Our published studies reveal how mechanical vibration and sound impact the design and performance of engineered devices and structures and how to control their negative influences. Vibration of continuous and discrete dynamical systems; Linear and nonlinear vibrations; Random vibrations; Wave propagation; Modal analysis; Mechanical signature analysis; Structural dynamics and control; Vibration energy harvesting; Vibration suppression; Vibration isolation; Passive and active damping; Machinery dynamics; Rotor dynamics; Acoustic emission; Noise control; Machinery noise; Structural acoustics; Fluid-structure interaction; Aeroelasticity; Flow-induced vibration and noise.
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