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Research on Low Speed Servo Control Technology of Ultra-precision Machine Tool

机译:超精密机床的低速伺服控制技术研究

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摘要

An ultra-precision machine is developed by Precision Engineering Research Institute of Harbin Institute of Technology to machine components made of KDP crystal with single point diamond fly cutting technique. A stable ultra-low speed feed of worktable is necessary in the machining process inasmuch as the KDP crystal components to be machined must be high form accuracy, low surface roughness and low surface waveness. This paper analyses the effect on speed stability and positioning accuracy under the control of semi-closed loop and full-closed loop based on the experimental data, and also present a compensating control algorithm of error disturbance feed-forward which enhances the stability of ultra-low speed motion of the semi-closed loop feed control servo system of the machine. The simulation results indicate that the values of the steady-state tracking error decreased to 1/10 after using compensating control algorithm. The P-V value of the aluminum specimen machined by the ultra-precision machine tool was 0.27 wavelengths.
机译:哈尔滨工业大学精密工程研究所开发了一种超精密机床,该机床采用单点金刚石飞刀切削技术加工KDP晶体制成的零件。在加工过程中,需要稳定的超低速工作台进给,因为要加工的KDP晶体组件必须具有较高的形状精度,较低的表面粗糙度和较低的表面波度。本文根据实验数据分析了半闭环和全闭环控制对速度稳定性和定位精度的影响,提出了一种误差干扰前馈补偿控制算法,提高了超闭环系统的稳定性。机器的半闭环进给控制伺服系统的低速运动。仿真结果表明,采用补偿控制算法后,稳态跟踪误差降低到1/10。用超精密机床加工的铝样品的P-V值为0.27波长。

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