Investigation on the Electrochemical Micromachining of Micro Through-Hole by Using Micro Helical Electrode

The instability of machining process caused by the difficulty of the electrolyte refresh in electrochemical micromachining (EMM) of micro through-hole has been an unsolved problem. Thus, this paper investigates the electrochemical micromachining of micro through-hole by using a micro helical electro...

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Main Authors: Baohui Liu, Hang Zou, Haixuan Luo, Xiaoming Yue
Format: Article
Language:English
Published: MDPI AG 2020-01-01
Series:Micromachines
Subjects:
Online Access:https://www.mdpi.com/2072-666X/11/2/118
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spelling doaj-b67a97e462c04b9a9d492aaa0a68c30e2020-11-25T02:18:25ZengMDPI AGMicromachines2072-666X2020-01-0111211810.3390/mi11020118mi11020118Investigation on the Electrochemical Micromachining of Micro Through-Hole by Using Micro Helical ElectrodeBaohui Liu0Hang Zou1Haixuan Luo2Xiaoming Yue3School of Mechanical Engineering, Shandong University, Jinan 250061, ChinaSchool of Mechanical Engineering, Shandong University, Jinan 250061, ChinaSchool of Mechanical Engineering, Shandong University, Jinan 250061, ChinaSchool of Mechanical Engineering, Shandong University, Jinan 250061, ChinaThe instability of machining process caused by the difficulty of the electrolyte refresh in electrochemical micromachining (EMM) of micro through-hole has been an unsolved problem. Thus, this paper investigates the electrochemical micromachining of micro through-hole by using a micro helical electrode combining with the jetting electrolyte. With the help of high-speed rotation of micro helical electrode and its spiral shape, the internal electrolyte can be stirred while the external jetting electrolyte can flow into the hole along the spiral groove to refresh the electrolyte effectively, thereby, improving the machining stability of EMM. Firstly, the influence of the process parameters on the fabrication of micro through-hole in the EMM by using micro helical electrode without non-conductive mask is investigated. Based on the optimization of the process parameters, a micro through-hole with an inlet dimension of 121.6 μm and an outlet dimension of 114.9 μm is obtained successfully. Furthermore, this paper also tries to use the micro helical electrode coated with the non-conductive mask to decrease the bad influence of the stray corrosion attack. It is found that the non-conductive mask coated on the surface of micro helical electrode can improve the machining accuracy significantly under the condition of low pulse frequency (≤1 KHz). However, its good effect on preventing the stray corrosion decreases along with the increase of the pulse frequency.https://www.mdpi.com/2072-666X/11/2/118electrochemical micromachining (emm)micro through-holemicro helical electrodestray corrosionnon-conductive mask
collection DOAJ
language English
format Article
sources DOAJ
author Baohui Liu
Hang Zou
Haixuan Luo
Xiaoming Yue
spellingShingle Baohui Liu
Hang Zou
Haixuan Luo
Xiaoming Yue
Investigation on the Electrochemical Micromachining of Micro Through-Hole by Using Micro Helical Electrode
Micromachines
electrochemical micromachining (emm)
micro through-hole
micro helical electrode
stray corrosion
non-conductive mask
author_facet Baohui Liu
Hang Zou
Haixuan Luo
Xiaoming Yue
author_sort Baohui Liu
title Investigation on the Electrochemical Micromachining of Micro Through-Hole by Using Micro Helical Electrode
title_short Investigation on the Electrochemical Micromachining of Micro Through-Hole by Using Micro Helical Electrode
title_full Investigation on the Electrochemical Micromachining of Micro Through-Hole by Using Micro Helical Electrode
title_fullStr Investigation on the Electrochemical Micromachining of Micro Through-Hole by Using Micro Helical Electrode
title_full_unstemmed Investigation on the Electrochemical Micromachining of Micro Through-Hole by Using Micro Helical Electrode
title_sort investigation on the electrochemical micromachining of micro through-hole by using micro helical electrode
publisher MDPI AG
series Micromachines
issn 2072-666X
publishDate 2020-01-01
description The instability of machining process caused by the difficulty of the electrolyte refresh in electrochemical micromachining (EMM) of micro through-hole has been an unsolved problem. Thus, this paper investigates the electrochemical micromachining of micro through-hole by using a micro helical electrode combining with the jetting electrolyte. With the help of high-speed rotation of micro helical electrode and its spiral shape, the internal electrolyte can be stirred while the external jetting electrolyte can flow into the hole along the spiral groove to refresh the electrolyte effectively, thereby, improving the machining stability of EMM. Firstly, the influence of the process parameters on the fabrication of micro through-hole in the EMM by using micro helical electrode without non-conductive mask is investigated. Based on the optimization of the process parameters, a micro through-hole with an inlet dimension of 121.6 μm and an outlet dimension of 114.9 μm is obtained successfully. Furthermore, this paper also tries to use the micro helical electrode coated with the non-conductive mask to decrease the bad influence of the stray corrosion attack. It is found that the non-conductive mask coated on the surface of micro helical electrode can improve the machining accuracy significantly under the condition of low pulse frequency (≤1 KHz). However, its good effect on preventing the stray corrosion decreases along with the increase of the pulse frequency.
topic electrochemical micromachining (emm)
micro through-hole
micro helical electrode
stray corrosion
non-conductive mask
url https://www.mdpi.com/2072-666X/11/2/118
work_keys_str_mv AT baohuiliu investigationontheelectrochemicalmicromachiningofmicrothroughholebyusingmicrohelicalelectrode
AT hangzou investigationontheelectrochemicalmicromachiningofmicrothroughholebyusingmicrohelicalelectrode
AT haixuanluo investigationontheelectrochemicalmicromachiningofmicrothroughholebyusingmicrohelicalelectrode
AT xiaomingyue investigationontheelectrochemicalmicromachiningofmicrothroughholebyusingmicrohelicalelectrode
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