考虑联轴器内摩擦的松动支撑转子系统动态特性分析

Yuan Wei, Jia Guo, Bowen Ma, Fanyi Xu, Kai-Uwe Schröder
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引用次数: 0

摘要

随着旋转机械向高速发展,转子系统中密封流体激振力的重要性与日俱增,它可能导致严重事故。以往对旋转机械转子的研究大多集中在联轴器不对中的影响上。本文提出了一个新模型,引入了一种结合联轴器内摩擦和松动支撑故障的分析方法。此外,文章还对内摩擦影响下的旋转系统振动特性进行了分析和讨论。这种方法可以更全面地评估转子在工程应用中的性能。假设转子左侧支撑松动,该模型重点研究了转子速度、偏心率、密封盘质量和左端支撑质量等各种因素如何影响迷宫密封转子系统的动态特性。研究结果表明,内摩擦力的出现加剧了转子的混乱。由此看来,随着转速的增加,会出现一个较小的频率范围,从而导致流体振荡,此时系统的稳定性会降低。密封盘质量的提高对左轴颈的稳定性影响很小,但会降低密封盘的稳定性。左端支撑质量的增加将提高左轴颈运动的稳定性,降低密封盘运动的稳定性。
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Dynamic characteristics analysis of a rotor system with loose support considering internal friction in couplings
Along with the rotating machinery advances toward high speeds, the significance of the excitation force of the seal fluid in the rotor system is growing, which can cause serious accidents. Most of the previous research on rotors in rotating machinery has predominantly focused on the effects of misalignment in couplings. In this article, a novel model is proposed, introducing an analytical approach that combines both internal friction in couplings and loosening support faults. Additionally, an analysis and discussion of the vibration characteristics of the rotating system under the influence of internal friction are presented. This method allows for a more comprehensive assessment of the performance of rotors in engineering applications. Assuming that the left support of the rotor is loose, this model focused on how various factors such as rotor speeds, eccentricity, seal disc mass, and left-end support mass affect the labyrinth seal rotor system's dynamic characteristics. Based on the findings, The emergence of internal friction forces advances the chaos of the rotor. It seems that as the rotating speed increases, there will be a small frequency range, resulting in fluid oscillation, and the system stability will be reduced at this time. The improvement in the seal disc's quality has minimal impact on the stability of the left journal, but it will reduce the stability of the seal disc. The increase in the mass of the left end support will increase the stability of the movement at the left journal and reduce the stability of the movement at the seal disc.
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