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首页> 外文期刊>Journal of vibration and control: JVC >Dynamic Balancing of a Centrifuge: Application to a Dual-Rotor System with Very Little Speed Difference
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Dynamic Balancing of a Centrifuge: Application to a Dual-Rotor System with Very Little Speed Difference

机译:离心机的动态平衡:应用于差速很小的双转子系统

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The conventional way of separating the vibration signals of the inner and outer rotors of a dual-rotor system is to separate the composite "beat" signal; however, this is not effective for a dual-rotor system with little speed difference. We propose a new method of separating the vibration signals of the inner and outer rotors of a system with veiy little speed difference. It is not necessary to separate the composite " beat" signal, as in the conventional method. The magnitude and phase values of the unbalanced weights are obtrined directly by sampling the vibration signal synchronized with a reference signal. The balancing process is completed by the reciprocity influence coefficients of the method of the inner and outer rotors. The results show the advantage of such a method for a dual-rotor system, compared with conventional balancing. The proposed new method has been successfully implemented in field dynamic balancing of the centrifuge with such dual-rotor systems in two rectifying planes with digital signal processing and virtual instrument technology.
机译:分离双转子系统的内转子和外转子的振动信号的常规方法是分离复合“拍子”信号。但是,这对于速度差很小的双转子系统无效。我们提出了一种分离速度差很小的系统的内,外转子振动信号的新方法。不需要像常规方法那样分离合成的“拍”信号。通过对与参考信号同步的振动信号进行采样,可以直接获得不平衡权重的大小和相位值。平衡过程由内,外转子方法的互易影响系数完成。结果表明,与传统的平衡相比,这种方法在双转子系统中具有优势。所提出的新方法已经成功地在具有数字信号处理和虚拟仪器技术的两个整流平面中的具有这种双转子系统的离心机的现场动态平衡中实现。

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