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On initialization of milling paths for 5-axis flank CNC machining of free-form surfaces with general milling tools

机译:普通铣削工具初始化5轴侧面CNC加工铣削路径的初始化

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摘要

We propose a path-planning algorithm for 5-axis flank CNC machining with general tools of varying curvature. Our approach generalizes the initialization strategy introduced for conical tools Bo et al. (2017) to arbitrary milling tools. Given a free-form (NURBS) surface and a rotational milling tool, we look for its motion in 3D to approximate the input reference surface within a given tolerance. We show that for a general shape of the milling tool, there exist locally and generically four 3D directions in which the point-surface distance follows the shape of the tool up to second order. These directions form a 3D multi-valued vector field and its integration gives rise to a set of integral curves. Among these integral curves, we seek straight line segments that correspond to good initial positions of the axes of the milling tool. We validate our method against synthetic examples with known exact solutions and, on industrial datasets, we detect approximate solutions that meet fine machining tolerances. We also demonstrate applicability of our method for efficient flank milling of convex regions that is not possible using traditional conical tools. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们提出了一种具有不同曲率的一般工具的5轴侧面CNC加工路径规划算法。我们的方法概括了锥形工具Bo等引入的初始化策略。 (2017)到任意铣削工具。给定自由形式(NURBS)表面和旋转铣削工具,我们在3D中寻找其运动,以近似于给定公差内的输入参考表面。我们表明,对于铣削工具的一般形状,存在局部和一般的四个3D方向,其中点表面距离遵循刀具的形状直到二阶。这些方向形成3D多值矢量字段,其集成导致一组积分曲线。在这些积分曲线中,我们寻求对应于铣削工具轴的良好初始位置的直线段。我们验证了具有已知精确解决方案的合成示例的方法,并且在工业数据集上,我们检测符合精细加工公差的近似解决方案。我们还证明了我们对使用传统锥形工具无法实现的凸面区域的高效侧面铣削的方法。 (c)2019 Elsevier B.v.保留所有权利。

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