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The Stability of Magnetic Levitation Milling System Based on Modal Decoupling Control

机译:基于模态去耦控制的磁悬浮铣削系统的稳定性

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Milling stability not only reduces the surface quality of the workpiece but also seriously restricts the high-speed development of CNC machine tools. The electric spindle rotor system with the active magnetic bearing has a strong gyro coupling effect, and with the increasing rotor speed, it will become a major unfavorable factor for the stability of the system during high-speed milling. The strong gyro coupling effect makes the stability region narrow at the time of high-speed milling. So, a modal decoupling control method that can reduce the effects of the gyro effect on the magnetic levitation milling system under high-speed milling is proposed. The effects of the gyro coupling of the magnetic bearing rotor on the milling stability region before and after the decoupling control are studied, which show that the modal decoupling control technology can reduce the effects of the gyro effect on the magnetic levitation milling system.
机译:铣削稳定性不仅降低了工件的表面质量,而且严重限制了数控机床的高速发展。具有主动磁性轴承的电动主轴转子系统具有强大的陀螺仪耦合效果,随着转子速度的增加,在高速研磨过程中将成为系统稳定性的主要不利因素。强陀螺耦合效果使得稳定区域在高速铣削时窄。因此,提出了一种模态去耦控制方法,可以在高速研磨下降低陀螺效果对磁悬浮铣削系统的影响。研究了磁轴承转子对去耦控制前后铣削稳定区域的磁轴承耦合的影响,表明模态去耦控制技术可以减少陀螺仪对磁悬浮铣削系统的影响。

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