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采用电化学放电加工对蓝宝石进行微钻削。

Micro-Drilling of Sapphire using Electro Chemical Discharge Machining.

作者信息

Ho Chao-Ching, Chen Jia-Chang

机构信息

Graduate Institute of Manufacturing Technology and Department of Mechanical Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.

出版信息

Micromachines (Basel). 2020 Apr 3;11(4):377. doi: 10.3390/mi11040377.

Abstract

Electrochemical discharge machining (ECDM) refers to a non-traditional machining method for performing effective material removal on non-conductive hard and brittle materials. To increase the ECDM machining efficiency, traditionally, the method of increasing the machining voltage or increasing the electrolyte concentration is used. These methods can also cause overcut reaming of the drilled holes and a rough surface on the heat affected area. In this study, an innovative combinational machining assisted method was proposed and a self-developed coaxial-jet nozzle was used in order to combine two assisted machining methods, tool electrode rotation and coaxial-jet, simultaneously. Accordingly, the electrolyte of the machining area was maintained at the low liquid level and the electrolyte was renewed at the same time, thereby allowing the spark discharge to be concentrated at the contact surface between the front end of the tool electrode and the machined material. In addition, prior to the machining and micro-drilling, the output of the machining energy assisted mechanism was further controlled and reduced. For the study disclosed in this paper, experiments were conducted to use different voltage parameters to machine sapphire specimens of a 640 μm thickness in KOH electrolyte at a concentration of 5 M.

摘要

电化学放电加工(ECDM)是一种用于对非导电硬脆材料进行有效材料去除的非传统加工方法。传统上,为提高ECDM加工效率,采用提高加工电压或增加电解液浓度的方法。这些方法也会导致钻孔出现过切扩孔以及热影响区域表面粗糙。在本研究中,提出了一种创新的组合加工辅助方法,并使用自行研制的同轴喷射喷嘴,以便同时结合两种辅助加工方法,即工具电极旋转和同轴喷射。相应地,加工区域的电解液保持在低液位,同时电解液得到更新,从而使火花放电集中在工具电极前端与被加工材料的接触表面。此外,在加工和微钻之前,进一步控制并降低加工能量辅助机构的输出。对于本文所披露的研究,进行了实验,以不同电压参数在浓度为5M的KOH电解液中加工厚度为640μm的蓝宝石试样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e700/7230221/bb6cbbee0479/micromachines-11-00377-g001.jpg

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