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An approach to interference-free cutter position for five-axis free-form surface side finishing milling

机译:五轴自由曲面侧面精铣的无干扰刀具定位方法

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摘要

This paper presents an algorithm for the interference-free cutter position in the five-axis side finishing milling of free-form surfaces. In the proposed method, the scallop height formed by two adjacent tool paths is estimated. The surfaces to be machined are divided into convex and non-convex regions. For the side milling of free-form surfaces, the tool axis is always oriented towards the direction corresponding to the minimal absolute normal curvature in order that the machining strip is as wide as possible. For convex regions, all directions in the tangent plane of the surface are gouge-free in the local sense, but the direction corresponding to the least normal curvature can ensure a wider effective strip. Without interference detection, the calculation is very fast. However, for non-convex regions, gouge detection and tool position modification are needed. The algorithm for estimating the scallop height is presented so that a reasonable arrangement of step width can be achieved.
机译:本文提出了一种在自由曲面的五轴侧精铣中无干扰刀具位置的算法。在所提出的方法中,估计了由两个相邻刀具路径形成的扇贝高度。待加工的表面分为凸形和非凸形区域。对于自由曲面的侧面铣削,刀具轴始终朝着对应于最小绝对法向曲率的方向定向,以使加工条尽可能宽。对于凸形区域,表面切线中的所有方向在局部意义上都是无切屑的,但是与最小法向曲率相对应的方向可以确保更宽的有效条带。没有干扰检测,计算速度非常快。但是,对于非凸区域,需要进行切屑检测和刀具位置修改。提出了估计扇贝高度的算法,以便可以合理地设置台阶宽度。

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