角接触球轴承涡轮泵转子动力学特性研究

IF 1.9 Q3 ENGINEERING, MECHANICAL
Vibration Pub Date : 2023-08-28 DOI:10.3390/vibration6030041
Yue Su, Kaifu Xu, Yongqiang Gao, Lu Jin
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引用次数: 0

摘要

采用角接触球轴承的涡轮泵转子系统的支承刚度随转速的变化而变化,导致对涡轮泵转子系统的动力学预测不准确。基于角接触球轴承刚度理论模型,建立了转子轴承系统模型,并对涡轮泵系统的动力学特性进行了计算。为了验证刚度和动力学模型的准确性,设计了角接触球轴承涡轮泵转子试验系统。由于无法直接测量轴承刚度,引入了刚度识别模型,并进行了不平衡响应试验对动力学模型进行了验证。研究发现,涡轮泵轴承刚度随转速动态增加,降低了转子的不平衡响应。结果表明,所建立的角接触球轴承刚度模型和转子支撑系统动力学模型是准确的,为角接触球轴承转子系统的动力学设计提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation on the Rotordynamic Characteristics of Turbopumps with Angular Contact Ball Bearings
The support stiffness of the turbopump rotor system with angular contact ball bearing varies with the rotational speed, which leads to the inaccurate prediction of the dynamics of the turbopump rotor system. The model of the rotor bearing system was constructed based on the theoretical model of angular contact ball bearing stiffness, and the dynamics characteristics of the turbopump system were calculated. To verify the accuracy of the stiffness and the dynamics model, a test system of the turbopump rotor with angular contact ball bearings was designed. Since the bearing stiffness cannot be measured directly, a stiffness identification model was introduced, and an unbalanced response test was conducted to verify the dynamics model. It was found that the turbopump bearing stiffness increased dynamically with speed and reduced the unbalance response of the rotor. The results show that the angular contact ball bearing stiffness model and the dynamics model of the rotor support system are accurate and provide support for the dynamics design of the turbopump rotor system with angular contact ball bearings.
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CiteScore
3.20
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