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State of the Art on Micromilling of Materials,a Review
Author(s): M.A. Cmara1), J.C. Campos Rubio1), A.M. Abro1) and J.P. Davim2) 1) Department of Mechanical Engineering, Universidade Federal de Minas Gerais, Av. Ant onio Carlos, 6627–Pampulha, Belo Horizonte MG, CEP: 31.270-901, Brazil 2) Department of Mechanical Engineering, University of Aveiro, Campus Universitrio de Santiago, 3810-193, Aveiro, Portugal
Pages: 673-
685
Year: 2012
Issue:
8
Journal: Journal of Materials Science & Technology
Keyword: Micro-milling; Micromachining; Size effect; Miniaturization;
Abstract: The trend towards miniaturization has increased dramatically over the last decade, especially within the fields concerned with bioengineering, microelectronics, and aerospace. Micromilling is among the principal manufacturing processes which have allowed the development of components possessing micrometric dimensions, being used to the manufacture of both forming tools and the final product. The aim of this work is to present the principal aspects related to this technology, with emphasis on the work material requirements, tool materials and geometry, cutting forces and temperature, quality of the finished product, process modelling and monitoring and machine tool requirements. It can be noticed that size effect possesses a relevant role with regard to the selection of both work material (grain size) and tooling (edge radius). Low forces and temperature are recorded during micromilling, however, the specific cutting force may reach high values because of the ploughing effect observed as the uncut chip thickness is reduced. Finally, burr formation is the principal concern with regard to the quality of the finished part.
Citations
- Rusnaldy,Tae Jo Ko,Hee Sool Kim. Micro-end-milling of single-crystal silicon . International Journal of Machine Tools & Manufacture . 2007
- Simoneau A,Ng E,Elbestawi M A. Surface De-fects during Microcutting . International Journalof Machine Tools&Manufacture . 2006
- Aramcharoen A,Mativenga P.T. Size effect and tool geometry in micromilling of tool steel . Precision Engineering . 2009
- K. Nakamoto,,T. Ishida,N. Kitamura,Y. Takeuchi. Fabrication of Microinducer by 5-axis Control Ultraprecision Micromilling . CIRP Annals . 2011
- Rahman M,Senthil Kumar A,Prakash J R S. Micro-milling of pure copper . Journal of Materials . 2001
- O.zel T,Liu X,Dhanorker A. Modelling and Simulationof Micro-Milling Process . Pro-ceedings of the 4th International Conference and Exhi-bition on Design and Production of Machines and Dies/Molds . 2007
- G Bissacco,HN Hansen,J Slunsky. CIRP Ann Manuf Technol . 2008
- A. Simoneau,,E. Ng,,M.A. Elbestawi. Chip formation during microscale cutting of a medium carbon steel . International Journal of Machine Tools & Manufacture . 2006
- Eckart Uhlmann,Sascha Piltz,Kai Schauer. Micro milling of sintered tungsten–copper composite materials . Journal of Materials . 2005
- A Aramcharoen,PT Mativenga,S Yang,KE Cooke,DG Teer. Evaluation and selection of hard coatings for micro milling of hardened tool steel . International Journal of Machine Tools and Manufacture . 2008