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DIRECT NC PATH GENERATION: FROM DISCRETE POINTS TO CONTINUOUS SPLINE PATHS

机译:直接的NC路径生成:从离散点到连续的样条路径

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摘要

Spline paths in NC machining are advantageous over linear and circular paths due to their smoothness and compact representation, thus are highly desirable in high-speed machining where frequent change of tool position and orientation may lead to inefficient machining, tool wear and chatter. This paper presents an approach for calculating spline NC paths directly from discrete points with controlled accuracy. Part geometry is represented by discrete points via an implicit point set surface (PSS). Cutter location (CL) points are generated directly from implicit part surfaces and interpolated by B-spline curves. A computing procedure for calculating maximum scallop height is given. The procedure is general and suitable for part surfaces in various surface representations provided that the closest distance from a point to the part surface can be calculated. Our results affirm that the proposed approach can produce high-quality B-spline NC paths directly from discrete points. The resulting spline paths make it possible for directly importing discrete points into CNC machines for high-speed machining.
机译:NC加工中的花键路径具有平滑度和紧凑的外观,因此优于直线和圆弧路径,因此在频繁加工刀具位置和方向可能导致加工效率低下,刀具磨损和颤动的高速加工中非常需要。本文提出了一种直接从离散点以可控制的精度计算样条NC路径的方法。零件的几何形状通过隐式点集曲面(PSS)用离散点表示。刀具位置(CL)点直接从隐式零件表面生成,并通过B样条曲线进行插值。给出了计算最大扇贝高度的计算程序。该过程是通用的,适用于各种表面表示形式的零件表面,条件是可以计算出从点到零件表面的最近距离。我们的结果证实,所提出的方法可以直接从离散点产生高质量的B样条NC路径。生成的样条路径使将离散点直接导入CNC机床进行高速加工成为可能。

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