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A study on active balancing for rotating machinery using influence coefficient method

机译:利用影响系数法实现旋转机械的主动平衡研究

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Unbalance-induced vibration of rotating machineries is an essential factor in lowering the efficiency and performance of a rotating system. Particularly, the severe resonant vibration of a rotor while passing critical speeds has harmful effect on the rotor system. To minimize this vibration effect, this paper shows the active balancing approach using the active balancing device of an electromagnetic type and the balancing control program with a gain scheduling control for real spindle system. The designed active balancing device features a simple structure, fast response, accurate control, and non-contact driving in order to resolve major problems of existing balancing system. In addition, the balancing control method using influence coefficient matrix of a reference model as the gain matrix is proved to be effective in balancing by experiments even though rotating system's characteristics are changed suddenly. The stability of reference influence coefficient is verified by frequency response functions. The active balancing experiment for spindle system with our balancing device and program is well performed during operation, and then controlled unbalance responses are also below the vibration limit at all rotating speed ranges including critical speeds.
机译:旋转机械的不平衡诱导的振动是降低旋转系统的效率和性能的必要因素。特别地,在通过临界速度的同时,转子的严重共振振动对转子系统产生有害影响。为了使该振动效应最小化,本文示出了使用电磁类型的主动平衡装置和具有用于真实主轴系统的增益调度控制的主动平衡装置的主动平衡方法。设计的主动平衡装置具有简单的结构,快速响应,准确控制和非接触式驱动,以解决现有平衡系统的主要问题。另外,由于旋转系统的特性突然改变,因此证明了作为增益矩阵的参考模型的影响系数矩阵的平衡控制方法被证明是有效的,即使旋转系统的特性突然改变。通过频率响应函数验证参考影响系数的稳定性。在操作期间具有平衡装置和程序的主轴系统的主动平衡实验,然后在操作期间进行很好地执行,然后控制的不平衡响应也低于包括临界速度的所有旋转速度范围的振动限制。

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