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Using the global optimisation methods to minimise the machining path length of the free-form surfaces in three-axis milling

机译:使用全局优化方法来最小化三轴铣削中自由曲面的加工路径长度

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During the machining of free-form surfaces using three-axis numerically controlled machine (NC), several parameters are chosen arbitrary and one of the most important is the feed motion direction. The main objective of this study is to minimise the machining time of complex surfaces while respecting a scallop height criteria. The analytical expression of the machining time is not known and by hypothesis, it is assumed to be proportional to the path length crossed by the cutting tool. This path length depends on the feed direction. To have an optimal feed direction at any point, the surface is divided into zones with low variation of the steepest slope direction. The optimization problem was formulated aiming at minimizing the global path length. Furthermore, a penalty reflecting the time loss due to the movement of the tool from one zone to another one is taken into account. Several heuristics are used to resolve this problem: Clarke and Wrights, Greedy randomized adaptive search procedure, Tabu search and Nearest neighbour search. An example illustrates our work by applying the different heuristics on a test surface. After simulations, the results obtained present a significant saving of paths length of 24% compared to the machining in one zone.
机译:在使用三轴数控机床(NC)加工自由曲面时,可以任意选择几个参数,其中最重要的一个是进给运动方向。这项研究的主要目的是在遵守扇贝高度标准的同时,尽量减少复杂表面的加工时间。加工时间的解析表达式是未知的,并且通过假设,假设它与切削刀具所经过的路径长度成比例。该路径长度取决于进纸方向。为了在任何点具有最佳的进给方向,将表面划分为最陡的坡度方向变化很小的区域。提出了优化问题,旨在最小化全局路径长度。此外,考虑了反映由于工具从一个区域移动到另一区域而造成的时间损失的损失。几种启发式方法用于解决此问题:Clarke和Wrights,贪婪的随机自适应搜索过程,禁忌搜索和最近邻居搜索。一个示例通过在测试面上应用不同的启发式方法来说明我们的工作。经过模拟,与在一个区域中进行加工相比,所获得的结果表明,路径长度显着节省了24%。

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