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Radial Error Feedback Control for Bar Turning in CNC Turning Centers

机译:数控车削中心棒材径向误差反馈控制

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摘要

In-process measurement and control of CNC machines can improve machining accuracy while increasing productivity and eliminating waste in a cost effective way. This paper describes an in-process measurement and control system called radial error feedback control (REFC) for bar turning in CNC turning centers. REFC was designed to compensate for the radial error due to the time-varying bar deflection caused by the cutting force, which moves along the bar at a constant velocity. In a dry cutting environment, a non-contact laser sensor was used to directly measure the radial error of the workpiece while it is being cut. To compensate for the radial error a gain -scheduled Kalman filter for prediction together with PI control law was designed, based on a time-varying model of the deflection (if the bar Analytical modelling (using classical beam vibration theory) was employed to develop a simple model for the bar bending. For non-uniform bars finite element modelling can be used. Experimental results show that the dimensional and geometric accuracy of the workpiece is substantially improved by this radial error feedback control technique.
机译:CNC机器的过程中测量和控制可以提高加工精度,同时以经济高效的方式提高生产率并消除浪费。本文介绍了一种用于数控车削中心的车削过程测量和控制系统,称为径向误差反馈控制(REFC)。 REFC旨在补偿由于切削力引起的随时间变化的钢筋挠度而引起的径向误差,切削力以恒定的速度沿钢筋运动。在干式切削环境中,非接触式激光传感器用于直接测量被切削工件的径向误差。为了补偿径向误差,基于挠度的时变模型(如果采用棒分析模型(使用经典梁振动理论)开发了一个增益预定的卡尔曼滤波器与PI控制律一起进行预测)钢筋弯曲的简单模型;对于非均匀钢筋,可以使用有限元建模;实验结果表明,这种径向误差反馈控制技术可大大提高工件的尺寸和几何精度。

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