王登勇
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Reduction of stray currents in counter-rotating electrochemical machining by using a flexible auxiliary electrode mechanism
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Affiliation of Author(s):机电学院

Journal:JOURNAL OF MATERIALS PROCESSING TECHNOLOGY

Key Words:Electrochemical machining Stray current Convex structure Flexible auxiliary electrode mechanism Positive potential difference

Abstract:Counter-rotating electrochemical machining (CRECM) is a new ECM technique which can be used to fabricate convex structures on thin-walled revolving parts. During the CRECM process, the non-machined top surface of the convex structure inevitably suffers from stray current attack, resulting in poor machining quality. To reduce the stray currents in CRECM, a flexible auxiliary electrode mechanism has been developed. A positive potential difference is applied between the auxiliary electrode and the anode work piece. The electric field distribution and the simulated convex profiles show that the stray current density can be reduced effectively by using an auxiliary electrode. The magnitudes of the stray current densities on the non-machined area decrease with increasing potential difference. A suitable positive potential difference of 10 V is able to completely eliminate the stray currents from the entire non-machined surface of the convex structure. Experiments have also been conducted to verify the proposed method. It was confirmed that the stray corrosion on the convex surface is significantly reduced and the machining quality is remarkably improved by using a flexible auxiliary electrode mechanism. (C) 2016 Elsevier B.V. All rights reserved.

ISSN No.:0924-0136

Translation or Not:no

Date of Publication:2017-01-01

Co-author:Zhu Zengwei,zz,He, Bin,Ge, Yongcheng

Correspondence Author:Wang Dengyong

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Professor
Supervisor of Doctorate Candidates

Gender:Male

Alma Mater:南京航空航天大学

Education Level:南京航空航天大学

Degree:Doctoral Degree in Engineering

School/Department:College of Mechanical and Electrical Engineering

Discipline:Mechanical Manufacture and Automation

Business Address:明故宫校区4号楼4309

Contact Information:dywang@nuaa.edu.cn

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