Joseph A Arsecularatne
Joseph A Arsecularatne
School of Materials Science and Engineering, UNSW Australia
E-mail confirmado em unsw.edu.au
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Wear and tool life of tungsten carbide, PCBN and PCD cutting tools
JA Arsecularatne, LC Zhang, C Montross
International Journal of Machine Tools and Manufacture 46 (5), 482-491, 2006
2572006
Prediction of cutting forces in machining of metal matrix composites
A Pramanik, LC Zhang, JA Arsecularatne
International Journal of Machine Tools and Manufacture 46 (14), 1795-1803, 2006
2092006
An FEM investigation into the behavior of metal matrix composites: tool–particle interaction during orthogonal cutting
A Pramanik, LC Zhang, JA Arsecularatne
International Journal of Machine Tools and Manufacture 47 (10), 1497-1506, 2007
1792007
Machining of metal matrix composites: effect of ceramic particles on residual stress, surface roughness and chip formation
A Pramanik, LC Zhang, JA Arsecularatne
International Journal of Machine Tools and Manufacture 48 (15), 1613-1625, 2008
1772008
On machining of hardened AISI D2 steel with PCBN tools
JA Arsecularatne, LC Zhang, C Montross, P Mathew
Journal of Materials Processing Technology 171 (2), 244-252, 2006
1562006
Calculation of optimum cutting conditions for turning operations using a machining theory
Q Meng, JA Arsecularatne, P Mathew
International Journal of Machine Tools and Manufacture 40 (12), 1709-1733, 2000
1032000
Prediction of chip flow direction and cutting forces in oblique machining with nose radius tools
JA Arsecularatne, P Mathew, PLB Oxley
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of …, 1995
961995
On tool-chip interface stress distributions, ploughing force and size effect in machining
JA Arsecularatne
International Journal of Machine Tools and Manufacture 37 (7), 885-899, 1997
811997
Polishing of polycrystalline diamond by the technique of dynamic friction. Part 2: Material removal mechanism
Y Chen, LC Zhang, JA Arsecularatne
International Journal of Machine Tools and Manufacture 47 (10), 1615-1624, 2007
682007
Polishing of polycrystalline diamond by the technique of dynamic friction, part 1: Prediction of the interface temperature rise
Y Chen, LC Zhang, JA Arsecularatne, C Montross
International Journal of Machine Tools and Manufacture 46 (6), 580-587, 2006
582006
Deformation mechanisms of MMCs under indentation
A Pramanik, LC Zhang, JA Arsecularatne
Composites Science and Technology 68 (6), 1304-1312, 2008
532008
On the wear mechanism of human dental enamel
JA Arsecularatne, M Hoffman
Journal of the mechanical behavior of biomedical materials 3 (4), 347-356, 2010
472010
Optimum cutting conditions for turned components
JA Arsecularatne, S Hinduja, G Barrow
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of …, 1992
461992
Prediction of chip flow direction, cutting forces and surface roughness in finish turning
JA Arsecularatne, RF Fowle, P Mathew
441998
Polishing of polycrystalline diamond by the technique of dynamic friction, part 3: Mechanism exploration through debris analysis
Y Chen, LC Zhang, JA Arsecularatne, I Zarudi
International Journal of Machine Tools and Manufacture 47 (15), 2282-2289, 2007
372007
On the interrelationships of some machinability parameters in finish turning with cermet chip forming tool inserts
IS Jawahir, N Qureshi, JA Arsecularatne
International Journal of Machine Tools and Manufacture 32 (5), 709-723, 1992
371992
Carbon nanotube reinforced ceramic composites and their performance
JA Arsecularatne, LC Zhang
Recent patents on nanotechnology 1 (3), 176-185, 2007
352007
Recent advances in understanding the fatigue and wear behavior of dental composites and ceramics
JJ Kruzic, JA Arsecularatne, CB Tanaka, MJ Hoffman, PF Cesar
Journal of the mechanical behavior of biomedical materials 88, 504-533, 2018
342018
Ceramic-like wear behaviour of human dental enamel
JA Arsecularatne, M Hoffman
Journal of the mechanical behavior of biomedical materials 8, 47-57, 2012
312012
The Oxley modeling approach, its applications and future directions
JA Arsecularatne, P Mathew
Machining Science and Technology 4 (3), 363-397, 2000
282000
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