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Strongly Nonlinear Dynamics of Torsional Vibration for Rolling Mill's Electromechanical Coupling System

机译:轧机机电耦合系统的扭转振动的强非线性动力学

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摘要

The torsional vibration often occurs during the rolling process, which will affect the production equipment. Based on electromagnetic field theory, the air gap magnetic field energy of salient pole synchronous motor was given, and the expression of electromagnetic torque was derived using the energy analysis method. In order to study the electromechanical coupling characteristics of the main drive system in rolling mill, a torsional vibration model with strongly nonlinear terms was established on the basis of mechanical dynamic principle. The periodic solutions of the strongly nonlinear torsional vibration system were obtained using the incremental harmonic balance (IHB) method. When the excitation force amplitude and the electromagnetic stiffness changed, the influence law on the torsional vibration characteristics of electromechanical coupling system under strongly nonlinear conditions was found. The effects of different electrical and mechanical parameters on the system amplitude-frequency property and vibration displacement characteristics were analyzed. All these research results are significant to structure design, parameter optimization and vibration control for the mill drive system.
机译:扭转振动通常在轧制过程中发生,这会影响生产设备。基于电磁场理论,给出了凸极同步电动机气隙磁场的能量,并利用能量分析方法推导了电磁转矩的表达式。为了研究轧机主传动系统的机电耦合特性,在机械动力学原理的基础上建立了具有强非线性项的扭转振动模型。利用增量谐波平衡(IHB)方法获得了强非线性扭转振动系统的周期解。当激振力振幅和电磁刚度发生变化时,发现了在强非线性条件下对机电耦合系统扭转振动特性的影响规律。分析了不同机电参数对系统幅频特性和振动位移特性的影响。所有这些研究结果对于轧机驱动系统的结构设计,参数优化和振动控制均具有重要意义。

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