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Supercritical Coexistence Behavior of Coupled Oscillating Planar Eccentric Rotor/Autobalancer System

机译:振荡平面偏心转子/自动平衡器系统的超临界共存行为

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摘要

The automatic balancing and undesirable nonsynchronous behavior of coupled oscillating configured flexible foundation and planar eccentric rotor equipped with a passive autobalancer (AB) system has been thoroughly investigated here. Specifically, it is described that the unified AB/rotor unit is attached to a foundation via a symmetric support and the foundation is also mounted on the spring-damper isolator which allows oscillating only vertically. Therefore, the AB/rotor unit dynamically interacts with the flexible foundation, which is quite analogous to well-known vertically coupled two-spring and two-mass oscillator. Although the single unit AB/rotor system is widely explored in the related AB studies, such coupled arrangement with AB discussed here has not been previously investigated and thus needs to be explored for further application of AB into various vibration isolation problems of other complicated machines/settings. Therefore, solutions for the synchronous stable balanced and the nonsynchronous unstable limit cycle response of AB/rotor/foundation system are obtained via a fixed equilibrium condition and a harmonic like balancing approach. Furthermore, the stability of each response is assessed via a perturbation and Floquet analysis and, for the system parameters and operating speeds, the undesirable coexistence of the wanted stable balanced synchronous response and undesirable nonsynchronous limit cycle has been thoroughly studied. Due to coupled oscillating feature, it is newly found that the multiple limit cycles are encountered in the range of supercritical speeds and more complicated coexistence is attracted into the system, as well as the damping parameters of coupled components (i.e., flexible foundation) influences of the undesirable limit cycle of AB on the particular supercritical speeds. The findings in this paper yield important insights for researchers wishing to utilize automatic balancing devices in more practical rotor systems coupled with additional vibrating mechanical subsystem such as a washing machine or a reciprocating air conditioning compressor with a flexible foundation.
机译:此处已对配备有无源自动平衡器(AB)系统的耦合振动配置的柔性基础和平面偏心转子的自动平衡和不良的非同步行为进行了全面研究。具体地,描述了将统一的AB /转子单元经由对称的支撑件附接到基础,并且基础也安装在仅允许竖直振动的弹簧-阻尼器隔离器上。因此,AB /转子单元与柔性基础动态地相互作用,这与众​​所周知的垂直耦合的两弹簧两质量振荡器非常相似。尽管单机AB /转子系统在相关的AB研究中得到了广泛的研究,但此处尚未讨论与AB耦合的这种布置方式,因此需要探索将AB进一步应用到其他复杂机器的各种隔振问题中。设置。因此,通过固定的平衡条件和类似谐波的平衡方法,获得了AB /转子/基础系统的同步稳定平衡和非同步不稳定极限循环响应的解决方案。此外,通过扰动和Floquet分析来评估每个响应的稳定性,并且对于系统参数和运行速度,已经全面研究了所需的稳定平衡同步响应和不希望的非同步极限周期的不希望的共存。由于耦合振动特性,新发现在超临界速度范围内会遇到多个极限循环,并且系统中会吸引更复杂的共存,以及耦合部件的阻尼参数(即柔性基础)的影响。 AB在特定超临界速度上的不良极限循环。本文的发现为希望在更实用的转子系统中使用自动平衡装置以及附加振动机械子系统(如洗衣机或具有柔性基础的往复式空调压缩机)的研究人员提供了重要的见识。

著录项

  • 来源
    《Shock and vibration》 |2018年第5期|4083897.1-4083897.19|共19页
  • 作者

    Jung DaeYi;

  • 作者单位

    Kunsan Natl Univ, Daehak Ro 558, Kunsan, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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