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Iso-parametric CNC tool path optimization based on adaptive grid generation

机译:基于自适应网格生成的等参CNC刀具路径优化

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摘要

The iso-parametric tool path is broadly used in CAM systems to machine sculptured surfaces. To satisfy tolerance constraints CAM systems usually adopt the smallest intervals across discrete tool paths, leading often to overlap and inefficient tool path. This paper presents a novel optimization scheme based on adaptive grid that can produce the optimal tool path on the basis of iso-parametric tool path and introduces the numerical method of generating the adaptive grid. When the generated optimal tool path has the same number of discrete tool path as the iso-parametric tool path, the optimal tool path will produce smaller machining errors. Or when the generated optimal tool path produces the same errors as the iso-parametric tool path, the optimal tool path will have fewer discrete tool paths and higher efficiency. This optimization scheme is robust, concise, and easy to be integrated into CAM systems to produce the optimal tool path automatically.
机译:等参刀具路径在CAM系统中广泛用于加工雕刻的曲面。为了满足公差约束,CAM系统通常在离散的刀具路径上采用最小的间隔,从而经常导致重叠和效率低下的刀具路径。本文提出了一种新的基于自适应网格的优化方案,该方案可以在等参刀具路径的基础上产生最优刀具路径,并介绍了生成自适应网格的数值方法。当生成的最佳刀具路径具有与等参数刀具路径相同数量的离散刀具路径时,最佳刀具路径将产生较小的加工误差。或者,当生成的最佳刀具路径产生与等参刀具路径相同的误差时,最佳刀具路径将具有更少的离散刀具路径和更高的效率。该优化方案健壮,简洁,并且易于集成到CAM系统中,以自动生成最佳刀具路径。

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