Prediction of Frequency Response of Fully-Assembled Rotor Based on Modal Testing Data on Partially-Assembled Rotor

Khanh-Tan Le, M. Noh, Y. Park
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Abstract

This paper explores a technique for obtaining a dynamic model that can predict a fully-assembled rotor's frequency response function. This technique just requires information on the frequency response function from a partially-assembled rotor. This research uses a rotor-like test piece as a dummy rotor for modal testing. Two methods are used to implement the technique. The first method is known as a finite element model updating method and the second one is a direct model estimation method. Both methods work in the same procedure. The first step is to get an appropriate mathematical model of the dummy rotor-only. The second step is to add a mass to the mathematical model to predict the frequency response function of the dummy rotor with additional mass. Validations show that both methods can predict the frequency response of the added-mass rotor up to the third flexible-body mode. Among these, the method of model updating shows a good agreement of resonance frequency and anti-resonance frequency between the predicted model and measured data, while the method of model estimation can match the predicted model and measured data very well in terms of resonance frequency and amplitude response.
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基于部分装配转子模态试验数据的整机转子频响预测
本文探讨了一种获得能够预测完整装配转子频率响应函数的动态模型的技术。该技术只需要部分组装转子的频率响应函数信息。本研究采用类转子试件作为假转子进行模态试验。有两种方法用于实现该技术。第一种方法称为有限元模型修正法,第二种方法是直接模型估计法。这两种方法在同一过程中工作。第一步是建立合适的虚转子数学模型。第二步是在数学模型中加入质量,以预测具有附加质量的虚拟转子的频响函数。验证结果表明,两种方法均能准确预测加质量转子至第三柔性体模态的频率响应。其中,模型更新方法在预测模型和实测数据的共振频率和反共振频率方面具有较好的一致性,而模型估计方法在共振频率和幅值响应方面可以很好地匹配预测模型和实测数据。
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