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On-machine fabrication of PCD and WC micro end mills using micro electro discharge machining

机译:使用微放电加工在机加工PCD和WC微型立铣刀

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摘要

Micro electro discharge machining (μ-EDM) process can be used to fabricate micro-milling tools of different geometries from tungsten carbide (WC) and polycrystalline diamond (PCD). The non-contact nature of EDM process makes micro tool fabrication a challenging task while offering the advantage of eliminating tool run out and clamping errors since micro tools fabricated on-machine. The tools are fabricated and used on the same spindle. In this study, a combination of block-EDM and wire electro discharge grinding (WEDG) techniques are used to fabricate micro end mills of different geometries. The influences of EDM process parameters on material erosion rate and surface roughness are examined. The performance of the fabricated micro-tools in ductile mode machining of fused silica has been investigated. It is found that micro end mills can be used to fabricate prototypes of microfluidics chips with acceptable quality.
机译:微放电加工(μ-EDM)工艺可用于制造由碳化钨(WC)和多晶金刚石(PCD)制成的不同几何形状的微铣削刀具。 EDM工艺的非接触性质使微型工具的制造成为一项具有挑战性的任务,同时具有消除由于微型工具在机上制造而导致的工具用尽和夹紧误差的优势。这些工具在同一主轴上制造和使用。在这项研究中,结合使用块式电火花加工和电火花线切割研磨(WEDG)技术来制造不同几何形状的微型立铣刀。研究了电火花加工工艺参数对材料腐蚀速率和表面粗糙度的影响。已经研究了所制造的微型工具在熔融石英延性加工中的性能。发现微型立铣刀可用于制造质量合格的微流控芯片原型。

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