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Research on Transfer Control Strategy in CNC High-speed and High-accuracy Machining

机译:数控高速高精度加工中的传递控制策略研究

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Feed rate has always been one of the most important indicators for CNC performance, while transfer velocity between two adjacent segments pays a key role in improving feed rate. Since the contour of a special part commonly consists of line and arc segments (non-micro segments), as well as continuous micro line segments (micro segments) .so there should be different methods to deal with their transfer velocity, respectively. In this paper, a new two-pass algorithm is proposed to find the optimal transfer velocity for micro segments. The theory of machining links and several constraints are developed to drive the algorithm. Then, a vector transfer algorithm is generated to realize transfer for non-micro segments, the generated algorithm is based on s curve and added to a new optimization algorithm to constrain the velocity, acceleration and jerk at the turning corner Finally, several examples are presented to illustrate the application of above two algorithms.
机译:进给速率一直是CNC性能的最重要指标之一,而两个相邻段之间的传输速度在提高进给速率方面起着关键作用。由于特殊零件的轮廓通常由线段和圆弧段(非微段)以及连续的微线段(微段)组成,因此应该分别采用不同的方法来处理它们的传递速度。在本文中,提出了一种新的两遍算法来找到微段的最佳传输速度。发展了加工环节的理论和一些约束条件来驱动算法。然后,生成矢量传递算法以实现非微细段的传递,该生成的算法基于s曲线并添加到新的优化算法中以约束转弯处的速度,加速度和加速度率。最后,给出了几个示例说明以上两种算法的应用。

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