[1]
P.L.B. Oxley, The Mechanics of Machining: An Analytical Approach to Assessing Machinability, Ellis Horwood, Chichester, (1989).
Google Scholar
[2]
B. Kristyanto, P. Mathew and J. A. Arsecularatne, Int. J. Machining Science and Technology, Vol 6 No 3, (2002), p.365.
Google Scholar
[3]
G.R. Johnson and W.H. Cook, Engineering Fracture Mechanics, Vol 21 No 1 (1985), p.31.
Google Scholar
[4]
H.J. Frost and M.F. Ashby, Deformation mechanism maps: The plasticity and creep of metals and ceramics, Pergamon, (1982).
Google Scholar
[5]
J. Harding, Int. Conf. Mech. Prop. Materials at High Rates of Strain, Oxford (1989), p.189.
Google Scholar
[6]
W.F. Hastings, P. Mathew and P.L.B. Oxley, Proc. R. Soc. Lond. Vol A371 (1980), p.569.
Google Scholar
[7]
M. Oyane, F. Takashima, K. Osakada, and H. Tanaka, Proc 10 th Japan Congress on Testing Materials, (1967), p.75.
Google Scholar
[8]
W.G. Ferguson, F.E. Hauser and J.E. Dorn, Brit. J. Appl. Phys., Vol. 18 (1967), p.411.
Google Scholar
[9]
A. Kumar, F.E. Hauser and J.E. Dorn, Acta Metallurgica, Vol. 16 (1968), p.1189.
Google Scholar
[10]
A. Kumar and R.G. Kumble, J. Appl. Phys., Vol. 40, No. 9 (1969), p.3475.
Google Scholar
[11]
J.D. Campbell and W.G. Ferguson, Phil. Mag., Vol 21 (8 th Series), (1970), p.63.
Google Scholar
[12]
S.P.F.C. Jaspers and J.H. Dautzenberg, J. Mat. Process. Technol., Vol. 122 (2002).
Google Scholar