The Effect of Cutting Tool Material and Edge Geometry on Tool Life and Workpiece Surface Integrity
- 1 February 2006
- journal article
- research article
- Published by SAGE Publications in Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture
- Vol. 220 (2) , 93-107
- https://doi.org/10.1243/095440506x78192
Abstract
Titanium alloys are used extensively in the aerospace industry and are generally classified as ‘hard to machine’. The combination of high strength at elevated temperatures, low thermal conductivity, low modulus of elasticity, and high chemical affinity with all available cutting tool materials means that there are inherent difficulties when machining. The extensive literature detailing all aspects of the machinability of titanium alloys is briefly reviewed; however, little of this refers specifically to surface integrity, which is critical to industries such as aerospace. This paper focuses on the effects that insert geometry had on tool life and workpiece surface integrity when cutting speed, feed rate, and depth of cut were varied. Specifically the effects of edge radius, side cutting edge angle, and edge land are considered. The findings show that whatever combination of tool geometry and operating parameters were used, the surface integrity is remarkably similar, even at relatively high cutting speeds and feed rates.Keywords
This publication has 33 references indexed in Scilit:
- Study on Machining of Titanium AlloysPublished by Elsevier ,2008
- Optimization of titanium alloy (6Al–4V) machiningPublished by Elsevier ,2003
- An overview of the machinability of aeroengine alloysPublished by Elsevier ,2003
- Tool life and surface integrity in turning titanium alloyJournal of Materials Processing Technology, 2001
- Machining of aerospace titanium alloysRobotics and Computer-Integrated Manufacturing, 2001
- Advanced cutting conditions for the milling of aeronautical alloysJournal of Materials Processing Technology, 2000
- An overview on the use of titanium in the aerospace industryMaterials Science and Engineering: A, 1996
- Diffusion wear in milling titanium alloysMaterials Science and Technology, 1988
- Tool Wear in Titanium MachiningCIRP Annals, 1982
- Procedures and Precautions in Machining Titanium AlloysPublished by Springer Nature ,1973