首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Ball End Mill-Tool Radius Compensation of Complex NURBS Surfaces for 3-Axis CNC Milling Machines
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Ball End Mill-Tool Radius Compensation of Complex NURBS Surfaces for 3-Axis CNC Milling Machines

机译:3轴CNC铣床的复杂NURBS表面的球终铣刀半径补偿

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摘要

In order to extend the 2D-TRC (tool radius compensation) function of 3-axis CNC milling machines to ball end mills (BEMs), a new TRC named BEM-TRC is proposed to achieve successful milling of complex surfaces without over-cut. The implementation of the BEM-TRC for complex surfaces depicted in NURBS model is divided into three steps. The first one is to search the cutting point (CP) on a NURBS surface using equi-arc length interpolation in u or v direction. The second one is to accomplish BEM-TRC at the CP through offsetting the CP to the cutter center point (CCP) of a BEM along the normal vector at CP. The third one is to compute the cutter location point (CLP) of the BEM according to the BEM-CCP. The simulation and experiment verifies that the BEM-TRC is feasible and effective, and can avoid over-cut phenomenon successfully. The BEM-TRC extends the ability of the traditional 2D-TRC function, and makes 3-axis CNC milling machines to accomplish the milling process of complex NURBS surfaces.
机译:为了将3轴CNC铣床的2D-TRC(刀具半径补偿)延伸到球端铣刀(BEMS),提出了一种名为BEM-TRC的新TRC,以实现成功的复杂表面铣削而不会过度切割。 NURBS模型中描绘的复杂表面的BEM-TRC的实现分为三个步骤。第一个是使用U或V方向上使用Equi-弧长度插值在NURBS表面上搜索切割点(CP)。第二个是通过沿CP的法线向量抵消CP,通过将CP抵消CP到沿BEM的刀具中心点(CCP)来完成BEM-TRC。第三个是根据BEM-CCP计算BEM的切割器位置点(CLP)。仿真和实验验证了BEM-TRC是可行和有效的,可以成功避免过度削减现象。 BEM-TRC扩展了传统的2D-TRC功能的能力,并制作了3轴CNC铣床,以完成复杂NURBS表面的铣削过程。

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