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Development of Tool Based Micromilling/Microdrilling Machine with Piezoactuated Workpiece Feeding System

机译:压电工件馈电系统的基于工具的微量磨/微型机械研制

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Tool based mechanical micromachining technology is gaining importance in MEMS device fabrication because of its ability to machine 3D micro features on different engineering materials. This paper presents the development of tool based mechanical micromachining center with piezoactuated workpiece feeding system. A high speed spindle is used to rotate the micromilling/drilling tool at a speed of 12,000 to 60,000 rpm. A thermoelectric based liquid cooling system is developed to control the temperature of the high speed spindle at a set value. Along with the X-Y positioning system, the workpiece is also mounted on a piezoactuator to provide Z-axis motion during machining operation. An electrical continuity based tool-workpiece contact detection system is developed to overcome premature tool failure during initial tool registration with the workpiece. Based on the developed tool-workpiece contact sensor, an in-situ measurement system is developed to measure the micromachining depth. Experiments were conducted to measure the performance of spindle cooling system and in-situ measurement system.
机译:基于刀具的机械微机械技术在MEMS器件制造中取得了重要性,因为它能够在不同的工程材料上机器3D微观特征。本文介绍了具有压电工件馈电系统的基于工具的机械微机械中心的开发。高速主轴用于以12,000至60,000rpm的速度旋转微磨/钻孔工具。开发了一种热电基液体冷却系统以控制设定值的高速主轴的温度。随着X-Y定位系统,工件也安装在压电耦合器上,以在加工操作期间提供Z轴运动。基于电连续性的工件 - 工件接触检测系统以克服与工件的初始工具登记期间过早的工具故障。基于开发的工具 - 工件接触传感器,开发出原位测量系统以测量微加压深度。进行实验以测量主轴冷却系统和原位测量系统的性能。

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