Tool edge radius wear and material removal rate performance charts for titanium micro-milling

被引:0
作者
Michael Miranda
David Serje
Jovanny Pacheco
Jorge Bris
机构
[1] Universidad del Norte,Department of Mechanical Engineering
来源
International Journal of Precision Engineering and Manufacturing | 2018年 / 19卷
关键词
Micro-milling; Titanium; Optimization; Tool edge; Tool wear;
D O I
暂无
中图分类号
学科分类号
摘要
Micro-machining applications have been extended from electronics to micro-scale medical implants and devices. Micro-milling among the micro-machining processes, has the potential to be the most cost effective and efficient material removal process due to ease of use and accessibility of the tools. Complex challenges are faced due to size effect, vibrations, and other uncontrollable factors coupled with a material like Titanium used in several aerospace and medical applications which is also a representative as difficult to machine material. This study analyzes tool edge wear on micro-end-milling of commercially pure Titanium (ASTM SB 265 GR2) applying design of experiment aided with response surface methodologies to find a proper set of cutting parameters. The results show that it is possible to achieve reduced tool wear while material removal rate is balanced simultaneously. Performance charts are developed to assist in appropriate selection of cutting parameters in Titanium micro-milling.
引用
收藏
页码:79 / 84
页数:5
相关论文
共 43 条
[1]  
Alting L.(2003)Micro Engineering CIRP Annals-Manufacturing Technology 52 635-657
[2]  
Kimura F.(2012)State of The Art on Micromilling of Materials, A Review Journal of Materials Science & Technology 28 673-685
[3]  
Hansen H. N.(2006)Investigation of Micro-Cutting Operations International Journal of Machine Tools and Manufacture 46 313-332
[4]  
Bissacco G.(1993)Aplicaciones Biomédicas del Titanio v sus Aleaciones Biomecánica 1 34-42
[5]  
Camara M. A.(2016)The Effect of Cutting Parameters on Surface Integrity in Milling Ti-6Al-4V South African Journal of Industrial Engineering 27 115-123
[6]  
Rubio J. C. C.(2000)Modeling Micro-End-Milling Operations. Part III: Influence of Tool Wear International Journal of Machine Tools and Manufacture 40 2193-2211
[7]  
Abrão A. M.(2011)Multiple-Response Optimization for Micro-Endmilling Process Using Response Surface Methodology The International Journal of Advanced Manufacturing Technology 56 177-185
[8]  
Davim J. P.(2010)Tool Wear and Cutting Forces Variation in High-Speed End-Milling Ti-6Al-4V Alloy The International Journal of Advanced Manufacturing Technology 46 69-78
[9]  
Chae J.(2001)Micro-Cutting of Steel to Meet New Requirements in Miniaturization CIRP Annals-Manufacturing Technology 50 61-64
[10]  
Park S. S.(2011)Tool Edge Radius Effect on Cutting Temperature in Micro-End-Milling Process The International Journal of Advanced Manufacturing Technology 52 905-912