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首页> 外文期刊>Journal of Manufacturing Processes >Study of different materials response in micro milling using four edged micro end mill tools
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Study of different materials response in micro milling using four edged micro end mill tools

机译:使用四个边缘微终轧制工具研究微铣刀的不同材料响应

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摘要

Fabrication of micro channels with a width of less than 200 mu m is always challenging as the available cutting tools are costly and not adequate for machining for a longer time. Popular tool fabrication processes like tool grinding experience high scrap rate as the micro features in the cutting tools cannot withstand the grinding forces. Other non-contact tool fabrication processes like focused ion beam machining (FIB) and wire electrodischarge machining (wire EDM) are very slow and need high capital investment. In this paper, micro end mill tools with high dimensional accuracy are fabricated by a sequential EDM method and the performance analysis is conducted by milling micro channels of different depth on aluminium 6061, brass 340, AISI 1040 and poly methyl methacrylate (PMMA). The cutting tools are proven to be capable of producing micro channels of high dimensional accuracy (100 +/- 4 mu m), nanometer surface fnish (29-120 nm), high surface integrity, and less post-milling tool damages.
机译:随着可用切削工具昂贵并且不适合加工,宽度小于200μm的微通道的制造总是具有挑战性的。流行的工具制造工艺如刀具研磨体验高稀率,因为切割工具中的微观特征不能承受磨削力。其他非接触式工具制造工艺,如聚焦离子束加工(FIB)和电线电沉积加工(电线EDM)非常慢,需要高资本投资。在本文中,通过顺序EDM方法制造具有高尺寸精度的微端铣刀工具,通过在铝6061,黄铜340,AISI 1040和聚甲基丙烯酸甲酯(PMMA)上铣削微观的不同深度的微通道进行性能分析。切割工具被证明能够生产高尺寸精度(100 +/-4μm),纳米表面锻造(29-120nm),高表面完整性和较少的研磨后工具损坏的微通道。

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