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Developing a Process Chain with WEDG Technology and Pulse ECM to Fabricate Ultra Micro Pins

机译:利用WEDG技术和脉冲ECM开发工艺链以制造超微型引脚

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摘要

Micro tools are widely used in some industry application, such as medical device, touching probe and micro electrode for EDM. Micro tools with diameter less than 50 μm have been successful to fabricate since the development of WEDG technology. Recently, some reports point out that it is also possible to produce micro tools with diameter less than 5 μm by WEDG technology. However the machining efficiency and tool will be bending when the diameter is less than 10 μm by WEDG Technology. Due to the electro-discharge and fluid action force, it is a still critical problem to fabricate a straight and tiny micro tool with diameter less than 10 μm. In order to fabricate micro tool with diameter less than 10 μm, a combined process of WEDG technology and electro chemical machining was proposed in this study. After WEDG technology applying to fabricate a micro tool with diameter approximately 40 μm. Pulse ECM was used on the same machine to re-shape micro tools with diameter below 10 μm. The experimental results show that with charge-coupled device (CCD) assistance the hybrid process is possible to fabricate a length of 1 mm and diameter 10 μm micro tool. To fabricate high quality micro tools, the parameters of WEDG technology and ECM such as discharge voltage, processing time, concentration of electrolyte will be also investigated in this study. It is expected that micro tools could be fabricated more efficiency by this process.
机译:微型工具广泛用于某些行业应用中,例如医疗设备,测头和EDM的微型电极。自WEDG技术发展以来,直径小于50μm的微型工具已成功制造出来。最近,一些报告指出,通过WEDG技术生产直径小于5μm的微型工具也是可能的。但是,如果使用WEDG技术,当直径小于10μm时,加工效率和刀具会弯曲。由于放电和流体作用力,制造直径小于10μm的笔直且微小的微型工具仍然是关键问题。为了制造直径小于10μm的微型工具,本研究提出了WEDG技术与电化学加工相结合的工艺。经过WEDG技术的应用,以制造直径约为40μm的微型工具。在同一台机器上使用Pulse ECM对直径小于10μm的微型工具进行整形。实验结果表明,利用电荷耦合器件(CCD)辅助,混合工艺可以制造长度为1 mm,直径为10μm的微型工具。为了制造高质量的微型工具,还将研究WEDG技术和ECM的参数,例如放电电压,处理时间,电解液浓度。期望通过该过程可以制造出更高效率的微型工具。

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