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The numerical modeling of rotor-stator rubbing in rotating machinery: a comprehensive review

机译:旋转机械转子定子摩擦的数值模型:全面评论

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摘要

The rotor-stator rubbing in rotating machinery generated as a consequence of rotor imbalance, shaft misalignment, and casing deformation is a potential threat to the machinery that seriously affects its performance. Timely prediction and correction of the rubbing are essential for the prolonged life of the machinery and its overall performance. A complete understanding of the system behavior during interaction is a great challenge for researchers working in the field of rotor dynamics. Rubbing phenomena involve complex contact nonlinearities and associated thermal effects, which makes the analysis very difficult. Research works in this field are started with the analysis of simple two degree-of-freedom models and now dealing with extensive three-dimensional finite element models. This paper provides a comprehensive review of different numerical models of rotor-stator rubbing with respect to their ability in simulating the actual response characteristics. A detailed description of contact modeling is also presented with the advantages and disadvantages of each model. Different methods for solving the numerical models are briefly explained. In addition, a commentary on different emerging techniques of rub identification is also reported. Finally, some informed recommendations on future directions are made by stating what lacks in the current research activities.
机译:由于转子不平衡,轴未对准和套管变形而产生的旋转机械中的转子定子摩擦是对严重影响其性能的机械的潜在威胁。及时预测和校正摩擦对于机械延长的寿命和整体性能至关重要。对互动期间的系统行为完全了解是在转子动力学领域工作的研究人员的巨大挑战。摩擦现象涉及复杂的接触非线性和相关的热效应,这使得分析非常困难。该领域的研究工作开始于分析简单的两级自由度模型,现在处理广泛的三维有限元模型。本文对转子定子摩擦的不同数值模型进行了全面审查,相对于模拟实际响应特性的能力。联系建模的详细描述也具有每个模型的优点和缺点。简要解释了用于解决数值模型的不同方法。此外,还报道了对不同新出现的摩擦鉴定技术的评论。最后,关于未来方向的一些知情建议是通过陈述目前的研究活动缺乏的方式来制定。

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