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Direct interpolation algorithm for pen-cutting of sculptured surfaces

机译:笔直切割雕刻表面的直接插值算法

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摘要

A direct interpolation algorithm for spatial curves on a surface is proposed for pen-cutting of sculptured surfaces. The algorithm can carry out the direct interpolation for projective curves lying on the sculptured surface. It is based on the geometric and kinetic relationships between drive curves and cutter-contact (C-C) curves. It evaluates the parameter of drive curves corresponding to interpolation points by the Taylor formula. Then it gains coordinates of interpolation points indirectly by inverse calculation. Finally, it generates the motion commands for machine tool controller. This method extends the locus-controlled function in the computer numerical control (CNC) system effectively and improves the efficiency for the numerical control (NC) machining of sculptured surfaces. The simulation shows that the proposed algorithm is feasible and practical. This algorithm can also be applied to the machining of the whole surface.
机译:提出了一种用于曲面空间曲线的直接插值算法,用于对雕刻曲面进行笔切割。该算法可以对位于雕刻表面上的投影曲线进行直接插值。它基于驱动曲线和刀具接触(C-C)曲线之间的几何和动力学关系。它通过泰勒公式评估与插补点相对应的驱动曲线的参数。然后通过逆计算间接获得插值点的坐标。最后,它为机床控制器生成运动命令。该方法有效地扩展了计算机数控(CNC)系统中的轨迹控制功能,并提高了雕刻表面数控(NC)加工的效率。仿真表明该算法是可行的。该算法也可以应用于整个表面的加工。

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