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Study on the micro-machining process with a micro three-sided pyramidal tip and the circular machining trajectory

机译:微型三棱锥尖端和圆形加工轨迹的微加工工艺研究

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In this paper a three-sided pyramidal tip was driven in a circular trajectory to perform micro-machining process. The circular trajectory was achieved by rotating the tip around a center point. Because of the asymmetry of the three-sided pyramidal tip, machining micro channels along different feeding directions would cause different cutting tracks, which influences the finish of channel sides. It was found that the variations of cutting rake angle and uncut chip thickness in each revolution mainly affected the burr formation. By studying effects of tip edge radius and tip geometry on machining process, a channel with slight burr at two sides was obtained. Using the optimized machining method and coordinating with feed motion of the work stage, perfect three-dimensional structures with well-finishing edges were obtained on aluminum alloy and polymethylmethacrylate (PMMA) surfaces. The dimension of fabricated 3D structures can be controlled in three dimensional directions, ranging from ten microns to several hundred microns. (C) 2014 Elsevier B.V. All rights reserved.
机译:在本文中,以圆形轨迹驱动三边金字塔形尖端以执行微加工过程。通过围绕中心点旋转尖端来获得圆形轨迹。由于三棱锥尖端的不对称性,沿不同进给方向加工微通道会导致不同的切削轨迹,从而影响通道侧面的光洁度。结果发现,每转的切削前角和未切削切屑厚度的变化主要影响毛刺的形成。通过研究尖端边缘半径和尖端几何形状对加工过程的影响,获得了在两侧都具有轻微毛刺的通道。使用优化的加工方法并配合工作台的进给运动,可以在铝合金和聚甲基丙烯酸甲酯(PMMA)表面上获得具有精加工边缘的完美三维结构。可以在从十微米到几百微米的三个维度方向上控制制造的3D结构的尺寸。 (C)2014 Elsevier B.V.保留所有权利。

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