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NC machining of freeform pockets with arbitrary wall geometry using a grid-based navigation approach

机译:使用基于网格的导航方法对任意壁几何形状的自由型腔进行NC加工

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摘要

A tool path must be determined in an efficient manner to generate NC (numerical control) code for machining. This is particularly important when machining freeform pockets with arbitrary wall geometry on a three-axis CNC machine. In this paper, a grid-based 3D navigation algorithm for generating NC tool-path data for both linear interpolation and a combination of linear and circular interpolation is presented for three-axis CNC milling of general pockets with sculptured bottom surfaces. The pocket surface is discretised by defining a grid and the navigation algorithm plans the tool motion. The grid size and the cutter diameter are chosen so that a predefined tolerance for surface roughness is satisfied. The grid-based navigation algorithm is simulated graphically and verified experimentally.
机译:必须以有效的方式确定刀具路径,以生成用于加工的NC(数控)代码。在三轴CNC机床上加工具有任意壁几何形状的自由型腔时,这一点尤其重要。在本文中,提出了一种基于网格的3D导航算法,用于生成线性插补以及线性和圆形插补的NC刀具路径数据,以对带有雕刻底面的普通型腔进行三轴CNC铣削。通过定义网格来离散型腔表面,导航算法计划工具运动。选择栅格尺寸和刀具直径,以便满足表面粗糙度的预定公差。对基于网格的导航算法进行了图形化仿真和实验验证。

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