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Accurate verification of five-axis numerically controlled machining.

机译:五轴数控加工的准确验证。

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Current automated machining systems are composed of a number of components to aid in bringing a surface from design to physical completion. Numerically controlled (NC) milling machines are used to cut parts out of stock. Programming these machines to cut a desired surface is still largely a matter of experienced human participation. Therefore, the need exists to verify that tool programs produce the desired part.; We present recent developments in the verification of NC tool programs. Many of these methods rely on approximating the stock material as vectors whose lengths reflect the amount of uncut material at any point. This allows simulation of 3-axis machining to be carried out efficiently, because the intersection process is simple to compute. Some machines are capable of 5-axis tool movements which are more versatile, but verification of these programs is difficult due to the complexity of the tool motion.; We show several techniques by which it is possible to determine the intersection of 5-axis tool movements and guarantee the accuracy of the results. These techniques can be integrated into current NC machining verification systems to allow checking of 5-axis programs. We then evaluate the relative performance of implementations on test data and real world data.
机译:当前的自动加工系统由许多组件组成,以帮助使表面从设计到物理完成。数控(NC)铣床用于切割缺货的零件。对这些机器进行编程以切割所需的表面仍然很大程度上取决于经验丰富的人员的参与。因此,存在验证工具程序产生所需零件的需求。我们介绍了数控刀具程序验证的最新进展。这些方法中的许多方法都依赖于将库存物料近似为矢量,其长度反映了任意点未切割物料的数量。由于相交过程易于计算,因此可以高效地进行3轴加工的仿真。有些机床可以进行5轴刀具运动,这些刀具具有更多用途,但是由于刀具运动的复杂性,很难验证这些程序。我们展示了几种技术,通过这些技术可以确定5轴刀具运动的交点,并保证结果的准确性。这些技术可以集成到当前的NC加工验证系统中,以检查5轴程序。然后,我们评估测试数据和真实数据上实现的相对性能。

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