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Space cutter radius compensation method for free form surface end milling

机译:自由曲面端面铣削的空间刀具半径补偿方法

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摘要

The numerical control (NC) program for multi-axis end milling depends on the parameters of the tool, in particular, the radius of the tool. When there is any tool dimensional change due to various reasons, the user needs to re-generate the NC program, which is a time-consuming procedure. In this article, a cutter radius compensation method for multi-axis end milling is proposed. It takes a general NC program as the input, recovers the normal vectors of the machined surface from the NC program via surface reconstruction, and uses these vectors as compensation vectors to realize space cutter radius compensation. The proposed algorithm of shape reconstruction and normal vector computation has a linear complexity in terms of the number of cutter center location points in the NC program. Thus, real-time computation and compensation is possible. Our method also provides a way to restore the machined surface if the CAD model of the machines surface is not accessible. This has other applications, such as interference detection and manufacturing simulation. The compensation algorithm is shown to be very effective in reducing the number of undercut points through simulation with the software VERICUT and with real milling for real-world NC programs.
机译:用于多轴立铣刀的数控程序(NC)取决于刀具的参数,特别是刀具的半径。当由于各种原因导致工具尺寸发生变化时,用户需要重新生成NC程序,这是一个耗时的过程。本文提出了一种用于多轴立铣的刀具半径补偿方法。它以一般的NC程序为输入,通过曲面重构从NC程序中恢复加工表面的法线矢量,并使用这些矢量作为补偿​​矢量来实现空间刀具半径补偿。所提出的形状重构和法向矢量计算算法在NC程序中就刀具中心位置点的数量而言具有线性复杂性。因此,实时计算和补偿是可能的。如果无法访问机器表面的CAD模型,我们的方法还提供了一种恢复加工表面的方法。这还有其他应用程序,例如干扰检测和制造仿真。通过使用VERICUT软件进行仿真并针对实际的NC程序进行实际铣削,该补偿算法在减少底切点数量方面非常有效。

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