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Investigation on the transient response of a speed-varying rotor with sudden unbalance and its application in the unbalance identification

机译:突然不平衡速度变化转子瞬态响应的研究及其在不平衡识别中的应用

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It is well known that the sudden unbalance is harmful for rotor systems, since it is in huge amount and has a strong impact. Thus, it is difficult to identify the unbalance from the sudden unbalance response of rotor and very few studies have been done on this topic. This paper focuses on the transient response characteristics of the speed-varying rotor when the sudden unbalance occurs, and the inherent correlation between the unbalance and the transient characteristic quantity. First, different time-dependent functions modelling the loading process of sudden unbalance are derived and compared with the experiment results of the test rotor. The selection principles of function type and duration value are presented. Analyses of transient response characteristics are conducted over the run-up process of the rotor with different parameters of sudden unbalance. Variations of transient response characteristics are summarized into three forms. The varying laws and interrelations of characteristic quantities, and the corresponding parameter region of sudden unbalance are illustrated for each form. Based on the transient analysis results, the momentary positions and angular variations of the rotor disc at some key time instants are illustrated via introducing the key-phase signal. A novel transient-vibration-based method for unbalance identification is proposed. Only a single run-up measurement is required. Numerical experiments verify the effectiveness of the method. In summary, the proposed method can provide a new way for the unbalance identification using the transient response.
机译:众所周知,突然的不平衡对转子系统有害,因为它占巨大并且产生了强烈的影响。因此,难以识别来自转子的突然不平衡响应的不平衡,并且对该主题进行了很少的研究。当发生突然不平衡时,本文侧重于速度变化转子的瞬态响应特性,以及不平衡与瞬态特征量之间的固有相关性。首先,与测试转子的实验结果相比,得出模拟突然不平衡的加载过程的不同时间依赖功能。呈现了功能类型和持续时间值的选择原理。瞬态响应特性的分析通过具有突然不平衡的不同参数的转子的延伸过程进行。瞬态响应特性的变化总结为三种形式。为每个形式示出了特征量的不同定律和相应的突然不平衡的相应参数区域。基于瞬态分析结果,通过引入关键相位信号示出了在某个键时刻的转子盘的瞬时位置和角度变化。提出了一种用于不平衡识别的新型瞬态振动方法。只需要单一的加次测量。数值实验验证了该方法的有效性。总之,所提出的方法可以利用瞬态响应提供不平衡识别的新方法。

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