首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Highly accurate 5-axis flank CNC machining with conical tools
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Highly accurate 5-axis flank CNC machining with conical tools

机译:高精度5轴侧面CNC加工锥形工具

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摘要

A new method for 5-axis flank computer numerically controlled (CNC) machining is proposed. A set of tappered ball-end-mill tools (aka conical milling tools) is given as the input and the flank milling paths within user-defined tolerance are returned. Thespace of lines that admit tangential motion of an associated truncated cone along a general, doubly curved, free-form surface is explored. These lines serve as discrete positions of conical axes in 3D space. Spline surface fitting is used to generate a ruled surface that represents a single continuous sweep of a rigid conical milling tool. An optimization-based approach is then applied to globally minimize the error between the design surface and the conical envelope. The milling simulations are validated with physical experiments on two benchmark industrial datasets, reducing significantly the execution times while preserving or even reducing the milling error when compared to the state-of-the-art industrial software.
机译:提出了一种用于5轴侧面计算机数控电脑(CNC)加工的新方法。 作为输入给出了一组Tappered Ball-end工具(AKA圆锥形铣削工具),并返回用户定义公差内的侧翼铣削路径。 探讨了沿着一般,双弯曲的自由形式探讨相关截断锥形的切向运动的线路。 这些线用作3D空间中的锥形轴的离散位置。 花键表面配件用于产生统治表面,该铺设表面表示刚性锥形铣削工具的单个连续扫描。 然后应用基于优化的方法来全局最小化设计表面和锥形包络之间的误差。 铣削模拟在两个基准工业数据集中进行了物理实验,在与最先进的工业软件相比时,在保持甚至降低铣削误差时,执行时间明显减少。

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