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Determining Setup Orientations From the Visibility of Slice Geometry for Rapid Computer Numerically Controlled Machining

机译:从切片几何的可见性确定安装方向,以进行快速的计算机数控加工

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摘要

A method for rapid computer numerically controlled (CNC) machining is being developed in an effort to automatically create functional prototypes and parts in a wide array of materials. The method uses a plurality of simple two-and-a-half-dimensional (2{sup}(1/2)-D) toolpaths from various orientations about an axis of rotation in order to machine the entire surface of a part without refixturing. It is our goal to automatically create these toolpaths for machining and eliminate the complex planning traditionally associated with CNC machining. In this paper, we consider a problem that arises in automating this process - visibility to the surface of a model that is rotated about a fourth axis. Our approach involves slicing the computer-aided design (CAD) model orthogonal to the axis of rotation. The slice geometry is used to calculate two-dimensional visibility maps for the set of polygons on each slice plane. The visibility data provides critical information for determining the minimum number and orientation of 2{sup}(1/2)-D toolpaths required to machine the entire surface of a part.
机译:正在开发一种用于快速计算机数控(CNC)加工的方法,以自动创建功能多样的材料中的功能原型和零件。该方法使用多个简单的二维半(2 {sup}(1/2)-D)刀具路径,这些路径来自围绕旋转轴的各种方向,以便在不重新固定的情况下加工零件的整个表面。我们的目标是自动创建这些用于加工的刀具路径,并消除传统上与CNC加工相关的复杂计划。在本文中,我们考虑了在自动执行此过程中出现的问题-围绕第四轴旋转的模型表面的可见性。我们的方法涉及切片与旋转轴正交的计算机辅助设计(CAD)模型。切片几何图形用于为每个切片平面上的一组多边形计算二维可见性图。可见性数据提供了关键信息,用于确定加工零件整个表面所需的2 {sup}(1/2)-D刀具路径的最小数量和方向。

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