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Exploratory study of spiral NC tool path generation on triangular mesh based on local subdivision

机译:基于局部细分的三角形网格上螺旋数控刀具路径生成的探索性研究

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摘要

As a representation of free-form surface, triangle mesh model (commonly with the stereo lithography format) has gained wide application in CAD and CAM recently because of its simple geometric computation, superior robustness, and high efficiency in tool path generation. However, conventional tool-path generation methods for NURBS surface are incapable of direct application to mesh models. Development of a tool-path generation method based on mesh model with high machining precision is becoming a key problem for NC machining. In this paper, a spiral tool-path generation method in finish-cut process is developed based on the offset-surface method (also called cutter location method). A novel local subdivision method is proposed firstly to guarantee edges of the offset-mesh within the required tool-path interval, and then gouge-free tool-path is generated by organizing path through vertex of the offset-mesh. Therefore, all the path intervals are under precise control by the local subdivision, allowing the mesh surface with both steeper and flatter areas to be machined with high-precision. Besides, tool-path naturally runs along the boundary of the triangle mesh model, ensuring continuous cut for reducing the fluctuation of cutting load. At last, tool-paths with multiple connective areas are generated for several complex mesh surfaces to clarify efficiency and robust of proposed method.
机译:作为自由曲面的一种表示形式,三角形网格模型(通常与立体光刻格式一样)由于其简单的几何计算,出色的鲁棒性和高效的刀具路径生成能力,最近在CAD和CAM中得到了广泛的应用。但是,用于NURBS曲面的常规工具路径生成方法无法直接应用于网格模型。基于网格模型的加工精度高的刀具轨迹生成方法的开发正成为数控加工的关键问题。本文基于偏置曲面法(也称为刀具定位法),开发了一种精加工中的螺旋刀具路径生成方法。提出了一种新颖的局部细分方法,首先保证偏移网格的边缘在所需的刀具路径间隔内,然后通过组织经过偏移网格顶点的路径来生成无切屑的刀具路径。因此,所有路径间隔都受到局部细分的精确控制,从而可以高精度地加工出既陡峭又平坦的网格表面。此外,刀具路径自然地沿着三角形网格模型的边界延伸,确保连续切削以减少切削负荷的波动。最后,针对多个复杂的网格曲面生成具有多个连接区域的刀具路径,以阐明所提方法的效率和鲁棒性。

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