- Cory, A., Smith, "Discontinuous reinforcement for MMC", Scott, D., Henry and Charles, Moosbrugger, editors, ASM handbook Vol. 21, Ohio, pp. 131, (2000).
- Mohan, Lal D., Renganarayanan, S., Kalanidhi, S., "Cryogenic treatment to augment wear resistance of tool and die steels", Cryogenics, Vol. 41, pp. 149-155, (2001).
- Vahdat, S.E., Nategh, S., Mirdamadi, S., "Microstructure and Tensile Properties of 45WCrV7 tool steel after Deep Cryogenic Treatment", Materials Science and Engineering A, Vol. 585, pp. 444-454, (2013).
- Das, D., Ray, K.K., "Structure-property correlation of sub-zero treated AISI D2 steel", Materials Science and Engineering A, Vol. 541, pp. 45-60, (2012).
- Vahdat, S.E., "Effect of deep cryogenic processing on tensile toughness of 45WCrV7 steel", International Journal of Steel Structures, Vol. 14, Issue 3, pp. 571-578, (2014).
- Zhirafar, S., Rezaeian, A., Pugh, M., "Effect of cryogenic treatment on the mechanical properties of 4340 steel", Journal of Materials Processing Technology, Vol. 186, pp. 298-303, (2007).
- Leskovsek, V., Kalin, M., Vizintin, J., "Influence of deep-cryogenic treatment on wear resistance of vacuum heat-treated HSS", Vacuum, Vol. 80, pp. 507-518, (2006).
- Hong-xiao, C.H.I., Dang-shen, M.A., Qi-long, Y., Li-zhi, W.U., Zhan-pu, Z., Yong-wei, W., "Effect of cryogenic Treatment on Properties of Cr8-Type Cold Work Die Steel", International Journal of Iron and Steel Research, Vol. 17, pp. 43-46, (2010).
- Koneshlou, M., Asl, K.M., Khomamizadeh, F., "Effect of cryogenic treatment on microstructure, mechanical and wear behaviors of AISI H13 hot work tool steel", Cryogenics, Vol. 51, pp. 55-61, (2011).
- He, Y., Yang, K., Qu, W., Kong, F., Su, G., "Strengthening and toughening of a 2800-MPa grade maraging steel", Material Letters, Vol. 56, pp. 763-769, (2002).
- Arsenault, R.J., Fishman, S., Taya, M., "Deformation and fracture behavior of metal-ceramic matrix composite materials", Progress in Materials Science, Vol. 38, pp. 1-157, (1994).
- Chawla, N., Allison, J.E., "Fatigue of Particle Reinforced Materials", K.H.J.B., Robert, W.C., Merton, C.F., Bernard, I., Edward, J.K., Subhash, M., et al., editors, Oxford, pp. 2967-2671, (2001).
- Nardone, V.C., Prewo, K.M., "On the strength of discontinuous silicon carbide reinforced aluminum composites", Scripta Metallurgica, Vol 20, pp. 43-8, (1986).
- Shen, Y.L., Fishencord, E., Chawla, N., "Correlating macrohardness and tensile behavior in discontinuously reinforced metal matrix composites", Scripta Materialia, Vol. 42, pp. 427-32, (2000).
- Lioyd, D.J., "Intrinsic and extrinsic fracture mechanisms in inorganic composite systems", Lewandowski, J.J., Hunt, W.H., editors, Warrendale, pp. 39-47, (1995).
- Bhaskar, S., Majumdar, S., "Engineering mechanics and analysis of Metal Matrix Composite", Scott, D., Henry, Charles, Moosbrugger, editors, ASM handbook Volume 21, Ohio, pp. 975, (2000).
- BS EN 10002-1, Metallic Materials tensile testing, part 1: Method of test at ambient temperature, British Standards Institution, (2000).
- Dieter, G.E., "Mechanical Behavior under tensile and compressive loads", Kuhn, H., Medlin, D., editors, ASM Handbook, Vol. 8, Ohio, pp. 100-103, (2000).
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