, Magnesium and Magnesium alloys, 2000.

R. Agnew, C. N. Tom, D. W. Brown, T. M. Holden, and S. C. Vogel, Application of texture simulation to understanding mechanical behavior of Mg and solid solution alloys containing Li or Y, Acta Materialia, vol.49, pp.4277-4289, 2001.

S. R. Agnew and O. Duygulu, Plastic anisotropy and the role of non-basal slip in magnesium alloy AZ31B, International Journal of Plasticity, vol.21, pp.1161-1193, 2005.

S. R. Agnew, C. N. Tom, D. W. Brown, T. M. Holden, and S. C. Vogel, Study of slip mechanisms in a magnesium alloy by neutron diffraction and modeling, Scripta Materialia, vol.48, pp.1003-1008, 2003.

T. Al-samman and G. Gottstein, Dynamic recrystallization during high temperature de-formation of magnesium, Materials Science and Engineering, vol.490, pp.411-420, 2008.

M. R. Barnett, A taylor model based description of the proof stress of magnesium AZ31 during hot working. Metallurgical and materials transactions, pp.34-1799, 2003.

S. Bhowmick, M. J. Lukitsch, and A. A. , Dry and minimum quantity lubrication drilling of cast magnesium alloy (AM60), Int. J. of Machine Tools & Manufacture, vol.50, pp.444-447, 2010.

M. S. Bhuiyan, Y. Mutoh, and A. J. Mcevily, The influence of mechanical surface treatments on fatigue behavior of extruded AZ61 magnesium alloy, Materials Science and Engineering: A, vol.549, pp.69-75, 2012.

B. Denkena, A. Lucas, F. Thorey, H. Waizy, N. Angrisani et al., Biocompatible Magnesium Alloys as Degradable Implant Materials -Machining Induced Surface and Subsurface Properties and Implant Performance, 2011.

F. Z. Fang, L. C. Lee, and X. D. Liu, Mean flank temperature measurement in high speed dry cutting of magnesium alloy, Journal of Material Processing Technology, vol.167, pp.119-123, 2005.

A. Galiyev, R. Kaibyshev, and G. Gottstein, Correlation of plastic deformation and dynamic recrystallization in magnesium alloy ZK60, Acta Materialia, vol.49, pp.1199-1207, 2001.

E. Gariboldi, K. Ishikawa, H. Watanabe, and T. Mukai, High strain rate deformation behavior of an AZ91 magnesium alloy at elevated temperatures, Journal of Materials Processing Technologies, vol.134, pp.1511-1515, 2003.

J. Koike, N. Fujiyama, D. Ando, and Y. Sutou, Roles of deformation twinning and dis-location slip in the fatigue failure mechanism of AZ31 Mg alloys, Scripta Materialia, vol.63, pp.747-750, 2010.

W. Liu, G. Wu, C. Zhai, W. Ding, and A. M. Korsunsky, Grain refinement and fatigue strengthening mechanisms in as-extruded Mg-6Zn-0.5Zr and Mg-10Gd-3Y-0.5Zr magnesium alloys by shot peening, International Journal of Plasticity, 2013.

K. Moussaoui, M. Mousseigne, J. Senatore, R. Chieragatti, and F. Monies, Influence of milling on surface integrity of Ti6Al4V-study of the metallurgical characteristics: microstructure and microhardness, Int. J. of Advanced Manufacturing Technology, vol.63, 2012.

L. Nascimento, S. Yi, J. Bohlen, L. Fuskova, D. Letzig et al., High cycle fatigue behaviour of magnesium alloys, Procedia Engineering, vol.2, pp.743-750, 2010.

Z. Pu, J. C. Outeiro, A. C. Batista, O. W. Dillon, D. A. Puleo et al., Enhanced surface integrity of AZ31B mg alloy by cryogenic machining towards improved functional performance of machined components, International Journal of Machine Tools & Manu-facture, vol.56, pp.17-27, 2012.

H. Sasahara, The effect on fatigue life of residual stress and surface hardness resulting from different cutting conditions of 0.45%C steel, Int. J. Machine Tools and Manufacture, vol.45, pp.131-136, 2005.

H. K. Tonshoff and J. Winkler, The influence of tool coatings in machining of magnesium, Surface and Coatings Technology, pp.610-616, 1997.

I. Ulacia, N. V. Dudamell, F. Galvez, S. Yi, M. T. Perez-prado et al., Mechanical behavior and microstructural evolution of a Mg AZ31 sheet at dynamic strain rates, Acta Materialia, vol.58, pp.2988-2998, 2010.

H. Watanabe, K. Ishikawa, and T. Mukai, High strain rate deformation behavior of Mg-Al-Zn alloys at elevated temperatures, Key Engineering Materials, pp.107-112, 2007.

P. Zhang, J. Lindemann, and C. Leyens, Influence of shot peening on notched fatigue strength of the high-strength wrought magnesium alloy AZ80, Journal of Alloys and Compounds, vol.497, pp.380-385, 2010.