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The Research of Dual NURBS Curves Interpolation Algorithm for High-Speed Five-Axis Machining

机译:双NURBS曲线插值算法研究高速五轴加工

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摘要

To achieve the goal of high-speed and highly accurate machining, this paper proposes a real-time control algorithm based on Taylor's expansion for implementing variable feed rate non-uniform rational B-spline (NURBS) curve. To efficiently compute the NURBS curve and its derivatives in real-time, some effective methods are proposed. In contrast to the existing linear and circular interpolators, the proposed interpolator can maintain small contour errors and feedrate fluctuations. It also can shorten the size of machining code effectively compared with the linear and circular interpolators. At the same time, the NURBS-format milling codes adapting the dual NURBS Curve interpolation algorithm for 5 axis high-speed machining are adopted in this study. Besides, an effective algorithm is adopted to minimize the kinematics error by means of the shortest path scheme.
机译:为了实现高速和高精度加工的目标,本文提出了一种基于泰勒扩展的实时控制算法,用于实现可变进料速率非均匀理性B样条(NURBS)曲线。为了实时有效地计算NURBS曲线及其衍生物,提出了一些有效的方法。与现有的线性和圆形内插器相反,所提出的内插器可以保持小的轮廓误差和进给波动。它还可以将加工代码的大小与线性和圆形插值器相比缩短。同时,在本研究中采用了采用5轴高速加工双轴曲线插值算法的NURBS格式铣削码。此外,采用有效算法通过最短路径方案最小化运动学误差。

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