Experimental investigation and multiphysics simulation on the influence of micro tools with various end profiles on diametrical overcut of holes machined using electrochemical micromachining for a predetermined optimum combination of process parameters

被引:0
作者
M. R. Pratheesh Kumar
K. Prakasan
K. Kalaichelvan
机构
[1] PSG College of Technology,Department of Production Engineering
[2] Anna University,Department of Ceramic Technology, Alagappa College of Technology, Guindy
来源
Russian Journal of Electrochemistry | 2016年 / 52卷
关键词
electrochemical micromachining (EMM); micro tools; stray current machining; Taguchi method; multiphysics; modeling and simulation;
D O I
暂无
中图分类号
学科分类号
摘要
Electrochemical micromachining (EMM) process is generally applied to shaping of electrically conductive materials which has been gaining popularity in the production of biomedical, MEMS, aerospace and nuclear components. The dimensional accuracy is affected by various process parameters of EMM and by the end profile of the cathode (tool) used to machine the feature. In this study, it is proposed to investigate the EMM process to know the influence of various process parameters on the diametrical overcut of the machined hole and the optimum combination of process parameters to produce holes with minimum diametrical over cut. A bare electrode with flat end is used for this purpose. Later, insulated electrode with flat end and bare electrodes with various end profiles are used to drill holes at the optimum combination of process parameters on Titanium grade II sheet to identify the most suitable micro tool to produce holes with minimum diametrical overcut and minimum stray machined zone. The EMM process of drilling holes using insulated electrode with flat end and bare electrodes with various end profiles are simulated at the optimum combination of process parameters using COMSOL Multiphysics V4.2a software. Results justified the use of multiphysics simulation to understand the process before conducting experiments so that costly trial and error experiments can be reduced to a minimum.
引用
收藏
页码:943 / 954
页数:11
相关论文
共 52 条
[1]  
Zhu D.(2011)undefined CIRP Annals-Manufacturing Technology 60 247-undefined
[2]  
Zeng Y.B.(2004)undefined Journal of Materials Processing Technology 149 445-undefined
[3]  
Xu Z.Y.(2005)undefined International Journal of Machine Tools and Manufacture 45 137-undefined
[4]  
Zhang X.Y.(2000)undefined Annals of the CIRP 49 151-undefined
[5]  
Dayanand S.B.(2009)undefined CIRP Annals-Manufacturing Technology 58 181-undefined
[6]  
Jain V.K.(2003)undefined Journal of Materials Processing Technology 140 287-undefined
[7]  
Shekhar R.(2014)undefined Journal of Materials Processing Technology 214 36-undefined
[8]  
Shaifadi M.(2012)undefined Electrochimica Acta 60 321-undefined
[9]  
Mohan S.(2012)undefined Electrochimica Acta 69 120-undefined
[10]  
Shan H.S.(2013)undefined Electrochimica Acta 103 161-undefined