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Polyline dwell time algorithm for every type of tool path for Ultrasonic-magnetorheological combined finishing

机译:用于超声波磁流变结合整理的各种刀具路径的折线停留时间算法

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Ultrasonic-magnetorheological combined finishing (UMC) is a new technique for the ultraprecision machining of aspheric surfaces, especially for high quality workpieces with small curvature radius concave surfaces. According to the characteristics of UMC finishing, material removal model has been developed. Several types of tool path planning algorithm have been discussed. Two kinds of polyline dwell time algorithm are presented. Polyline Dwell time algorithm based on two-dimensional discrete convolution is a new dwell time algorithm, and the dwell time on the endpoints which compose the tool path can be solved by the algorithm directly. Every polyline dwell time is the mean value of dwell time of two endpoints, therefore, the polyline dwell time of every type of tool path can be solved efficiently by the algorithm. The simulation of two dwell time algorithms has been conducted with same removal function and original error distribution, and the pv convergence rate is improved from 0.939 to 0.973 by using new algorithm. Figure error PV values reduced to 29.4 nm from 1.67μm after UMC finishing. The efficiency of the polyline dwell algorithm is proved by computer simulation and experimental results.
机译:超声波磁流变结合精加工(UMC)是一种新的非球面表面的超自眼加工技术,特别是对于具有小曲率半径凹面的高质量工件。根据UMC精加工的特性,已经开发了材料去除模型。已经讨论了几种类型的刀路路径规划算法。提出了两种折线停留时间算法。基于二维离散卷积的折线停留时间算法是一种新的停留时间算法,并且可以直接通过算法解决构成刀具路径的端点上的停留时间。每个折线停留时间是两个端点的停留时间的平均值,因此,可以通过算法有效地解决各种刀具路径的折线停留时间。通过使用新算法,使用相同的去除功能和原始误差分布进行了两个停留时间算法的模拟,并且PV收敛速度从0.939增加到0.973。图误差PV值在UMC精加工后从1.67μm降至29.4nm。通过计算机仿真和实验结果证明了折线停留算法的效率。

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