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Design of a Drilling Torque Controller for a Machining Center

机译:加工中心钻削扭矩控制器的设计

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In the drilling process, cutting torque control through feedrate manipulation has significant benefits in prevention of tool breakage and reduction of machine tool vibration and tool wear. In this paper, a PID torque controller was designed for real time drilling torque control in a machining centre. The drilling torque was estimated from the spindle motor current and regulated by feedrate control. The plant including the feed drive system, cutting process, and spindle system was modelled for controller design. For a certain cutting condition, the Ziegler-Nichols method was used to determine the proportional gain and derivative and integral control action times of the controller. Also, the root locus plot was used to tune the proportional gain of the controller. A simple method was also suggested to obtain the tuned controller gain instead of the Ziegler-Nichols method and the root locus plot for an arbitrary cutting condition. Experimental works have been performed to verify the performance of the proposed controller. It is shown that the gain tuning is essential for enhancement of the controller performance and the designed controller can regulate the drilling torque well at a given reference level.
机译:在钻孔过程中,通过进给率控制来控制切削扭矩在防止刀具破损以及减少机床振动和刀具磨损方面具有显着优势。本文设计了一种PID转矩控制器,用于在加工中心进行实时钻孔转矩控制。根据主轴电机电流估算钻孔扭矩,并通过进给率控制进行调节。对包括进给驱动系统,切割过程和主轴系统的工厂进行了建模,以进行控制器设计。对于特定的切削条件,使用Ziegler-Nichols方法确定控制器的比例增益以及微分和积分控制作用时间。同样,根轨迹图用于调整控制器的比例增益。还提出了一种简单的方法来获得调整后的控制器增益,而不是使用Ziegler-Nichols方法和针对任意切削条件的根轨迹图。实验工作已经进行,以验证所提出的控制器的性能。结果表明,增益调整对于提高控制器性能至关重要,并且设计的控制器可以在给定的参考水平上很好地调节钻探扭矩。

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