Constant force grinding control method for unknown curve part based on force/torque information

Tie Zhang, Wenbo Liu, Xiaohong Liang
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引用次数: 3

Abstract

A method of constant grinding force following unknown curve part based on force/torque information is presented in this paper. A new estimation method of the unknown curve normal direction is proposed based on force and torque information. According to the method, the force control and position control directions of the hybrid force/position control can be estimated. The conventional proportion integration (PI) force control method is tested at first. Since the force PI control parameters are difficult to determine, fuzzy PI control is introduced to optimise the force PI control parameters automatically. According to the experiment result, the method can greatly reduce the contact force fluctuation during grinding wheel contact with part contour, and the contact force during estimating curve surface is in the desired range of ± 2 N. And during grinding procedure, the acting force fluctuation is in the desired range of ± 7 N. [Received 20 April 2015; Revised 17 February 2016; Accepted 23 February 2016]
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基于力/扭矩信息的未知曲线零件恒力磨削控制方法
提出了一种基于力/扭矩信息的恒磨削力跟踪未知曲线零件的方法。提出了一种基于力和力矩信息的未知曲线法向估计方法。根据该方法,可以估计力/位置混合控制的力控制方向和位置控制方向。首先对传统的比例积分力控制方法进行了试验。针对力PI控制参数难以确定的问题,引入模糊PI控制对力PI控制参数进行自动优化。实验结果表明,该方法可大大减小砂轮与零件轮廓接触时的接触力波动,估计曲面时的接触力在±2 n的期望范围内,磨削过程中,作用力波动在±7 n的期望范围内。2016年2月17日修订;接受2016年2月23日]
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