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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Rolling bearing-suspended spindle run-out control using repetitive control and adaptive feedforward cancellation
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Rolling bearing-suspended spindle run-out control using repetitive control and adaptive feedforward cancellation

机译:使用重复控制和自适应前馈消除的滚动轴承悬浮主轴跳动控制

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摘要

The wettability, friction, adhesion, and optical characteristics of a surface are affected by its micro-topography. In turn, the characteristics of a surface micro-topography can be determined by controlling the trajectory of a cutting tool mounted on a spindle. However, this method is constrained by the tool’s cutting accuracy, which is limited by the run-out error and thermal behavior of the spindle. In this work, an electromagnetic actuator (EMA) is installed at the end of the spindle to compensate for the spindle run-out error and the thermal displacement in real time. The spindle system model includes a cross-coupled stiffness and damping term for the ball bearings. Repetitive controller (RC) reduces the repeatable run-out (RRO) while adaptive feedforward cancellation (AFC) reduces the non-repeatable run-out (NRRO). The control system uses a zero phase error tracking controller (ZPETC) to compensate for its total phase delay. Experimental results show a 70% reduction in run-out error at rotation speeds of 6,000 rpm and 12,000 rpm. The thermal displacement in the radial direction is regulated within a range of 1 µm for more than 3 hours.
机译:表面的润湿性,摩擦,粘附力和光学特性受其微观形貌的影响。反过来,可以通过控制安装在主轴上的切削刀具的轨迹来确定表面微形貌的特征。但是,这种方法受刀具的切削精度限制,而切削精度受主轴的跳动误差和热行为所限制。在这项工作中,将电磁致动器(EMA)安装在主轴末端,以实时补偿主轴跳动误差和热位移。主轴系统模型包括球轴承的交叉耦合刚度和阻尼项。重复控制器(RC)减少了可重复跳动(RRO),而自适应前馈消除(AFC)减少了不可重复跳动(NRRO)。控制系统使用零相位误差跟踪控制器(ZPETC)来补偿其总相位延迟。实验结果表明,在6,000 rpm和12,000 rpm的转速下,跳动误差降低了70%。将径向的热位移控制在1 µm的范围内超过3个小时。

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