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Improved positioning of cylindrical cutter for flank milling ruled surfaces

机译:改进了用于侧面铣削直纹表面的圆柱刀具的定位

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摘要

An optimized positioning procedure for flank milling ruled surfaces with cylindrical cutter is described in the paper. The tool axis trajectory surface is a ruled surface, which is generated by moving the tool axis. The proposition that the envelope surface of cylindrical cutter is the offset surface of tool axis trajectory surface is proved using kinematics approach. It is a complement of Bedi's [Bedi S, Mann S, Menzel C. Flank milling with flat end cutter. Comput Aided Des 2003; 35:293-300] analysis about the envelope surface of cylindrical cutter. Subsequently, we get another proposition that the deviation at extremum point between the designed surface and the envelope surface of cylindrical cutter is equal to that between the offset surface of designed surface and the tool axis trajectory surface. Based on this proposition, we propose three points offset (TPO) strategy to approximate the offset surface. In order to reduce errors further, a simple least square approximation scheme is established to make the tool axis trajectory surface fit the offset surface of designed surface as much as possible. By solving the linear system of equations, the tool axis trajectory surface is deformed. Simultaneously, the corresponding envelope surface is deformed to approximate the designed surface better. Two examples are given to verify the effectiveness of the developed 5-axis flank milling technique.
机译:本文介绍了用圆柱刀侧铣直纹表面的优化定位程序。刀具轴轨迹表面是通过移动刀具轴而生成的直纹表面。通过运动学方法证明了圆柱刀具的包络面为刀具轴线轨迹面的偏置面的命题。它是Bedi的[Bedi S,Mann S,Menzel C.平头铣刀侧面铣削的补充。 2003年计算机辅助设计; 35:293-300]分析圆柱刀具的包络面。随后,我们得到另一个命题,即在设计面与圆柱刀具的包络面之间的极点偏差等于在设计面的偏置面与刀具轴轨迹面之间的偏差。基于此命题,我们提出了三点偏移(TPO)策略来近似偏移表面。为了进一步减少误差,建立了一种简单的最小二乘近似方案,以使刀具轴轨迹表面尽可能地适合设计表面的偏置表面。通过求解线性方程组,刀具轴轨迹表面会变形。同时,使相应的包络面变形以更好地接近设计面。给出了两个例子来验证所开发的5轴侧面铣削技术的有效性。

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