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Friction Modeling and Compensation for Feed Drive Motions of CNC Milling Machines

机译:数控铣床进给驱动运动的摩擦建模与补偿

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摘要

Friction exists in the feed drive servomechanisms of CNC milling machines and usually deteriorates their motion. Although many studies have demonstrated good motion results by applying friction compensation, the simplified model of friction still limits the motion accuracy of feed drives of CNC machine tools. In this study, breakaway and constant velocity experiments were performed to obtain data for analyzing the static and velocity-dependent friction of a feed drive servomechanism in CNC milling machines. Moreover, different payload conditions were considered in developing friction compensation lookup tables and velocity-dependent friction models for reducing the adverse effects induced by static and velocity-dependent friction. An integrated friction model that considers the payload effects and position dependency of friction was thus developed in this study for friction compensation, and a feedforward friction compensation structure was further developed for controlling the motions of the feed drives of CNC milling machines. Several experiments and motion tests were performed on a three-axis CNC milling machine to illustrate the feasibility of the friction compensation method developed in this study. The experimental results indicate that the friction-compensated motion control system with the integrated friction model developed in this study achieves a reduction of 29.13% (on average) for the maximum value and a reduction of 42.58% (on average) for the root-mean-square value of the contouring errors.
机译:数控铣床的进给驱动伺服机构中存在摩擦,通常会使其运动变差。尽管许多研究通过应用摩擦补偿已证明了良好的运动效果,但简化的摩擦模型仍然限制了CNC机床进给驱动器的运动精度。在这项研究中,进行了分离和恒速实验,以获得用于分析CNC铣床中进给驱动伺服机构的静摩擦和速度相关摩擦的数据。此外,在开发摩擦补偿查找表和速度相关的摩擦模型时考虑了不同的有效载荷条件,以减少静摩擦和速度相关的摩擦引起的不利影响。因此,在本研究中开发了一种综合摩擦模型,该模型考虑了有效载荷效应和摩擦的位置依赖性,以进行摩擦补偿,并进一步开发了前馈摩擦补偿结构来控制CNC铣床的进给驱动器的运动。在三轴CNC铣床上进行了一些实验和运动测试,以说明在这项研究中开发的摩擦补偿方法的可行性。实验结果表明,采用本研究开发的集成摩擦模型的摩擦补偿运动控制系统的最大值降低了29.13%(平均),均方根降低了42.58%(平均)轮廓误差的平方值。

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