Parametric analysis of fabrication of through micro holes on titanium by maskless electrochemical micromachining

被引:0
作者
Sandip S. Anasane
B. Bhattacharyya
机构
[1] College of Engineering Pune (COEP),Department of Production Engineering and Industrial Management
[2] Jadavpur University,Production Engineering Department
来源
The International Journal of Advanced Manufacturing Technology | 2019年 / 105卷
关键词
Titanium; Micromachining; Micro hole; Electrochemical micromachining; Anodic dissolution; Micro feature; Micro tool;
D O I
暂无
中图分类号
学科分类号
摘要
Machining of micro features on titanium is a complex task due to its natural physical and chemical properties. Electrochemical micromachining (EMM) presents several advantages, such as minimum or no tool wear, stress-free machining with greater surface finish. This paper demonstrated successful fabrication of micro feature, i.e., through micro holes on pure commercial titanium with the help of maskless electrochemical micromachining process. Influence of various EMM process parameters, i.e., machining voltage, pulse frequency, duty ratio, and micro tool feed rate on machining accuracy in terms of radial overcut and conicity of micro hole as well as material removal rate (MRR), has been investigated to establish suitable process parameters for through micro hole generation. Surface quality of machined micro holes with respect to EMM process parameters was also investigated. Outcomes of this experimental investigation ensure fabrication of through micro holes with minimum overcut and taper angle. Machining voltage of 8 V, pulse frequency of 200 kHz, and micro tool feed rate of 0.6 μm/s with lower duty ratio are proved to be major influencing parameters. Surface roughness of 0.09 μm has been achieved with most suitable process parameters. In situ fabricated disk micro tool has been utilized to enhance machining accuracy. The study presented in this article can be a potential application for generation of various other micro features on pure commercial titanium which will find potential applications in microneedles, drug delivery systems, and features for various BioMEMS and engineering applications.
引用
收藏
页码:4585 / 4598
页数:13
相关论文
共 68 条
[11]  
Chang YS(2008)A potential method for electrochemical micromachining of titanium alloy Ti6Al4V J Appl Electrochem 38 785-127
[12]  
Kumar Jatinder KJS(2003)Electrochemical micromachining of titanium using laser oxide film lithography: excimer laser irradiation of anodic oxide Appl Surf Sci 211 113-704
[13]  
Mohapatra SK(1973)Anodic oxidation of titanium and its alloys, J.O Mater Sci 8 688-2160
[14]  
Bhattacharyya B(2016)Experimental investigation on suitability of electrolytes for electrochemical micromachining of titanium Int J Adv Manuf Technol 86 2147-B503
[15]  
Malapati M(2003)Scale-resolved electrochemical surface structuring of titanium for biological applications J Electrochem Soc 150~11 B495-3201
[16]  
Munda J(2003)Electrochemical micromachining, polishing and surface structuring of metals: fundamental aspects and new developments Electrochem Acta 48 3185-483
[17]  
Dhobe SD(1976)On the electrochemical machining of some titanium alloys in bromide electrolytes J Appl Electrochem 6 477-275
[18]  
Doloi B(1997)Electrochemical micromachining of controlled topographies on titanium for biological applications J Micromech Microeng 7 270-3492
[19]  
Bhattacharyya B(2011)Micropatterning of titanium surfaces usingelectrochemical micromachining with an ethylene glycol electrolyte Mater Lett 65 3489-156
[20]  
Dyaminov RD(2013)Parametric Investigation Into the Fabrication of Disk Microelectrodes by Electrochemical Micromachining J Micro Nano-Manuf 1 041005–1-38