共 87 条
[1]
Zhu Y.T., Liao X.Z., Wu X.L., Deformation twinning in nanocrystalline materials, Prog. Mater. Sci., 57, 1, pp. 1-62, (2012)
[2]
Schiotz J., Di Tolla F.D., Jacobsen K.W., Softening of nanocrystalline metals at very small grain sizes, Nature, 391, pp. 561-563, (1998)
[3]
Liao X.Z., Kilmametov A.R., Valiev R.Z., Gao H., Li X., Mukherjee A.K., Bingert J.F., Zhu Y.T., High-pressure torsion-induced grain growth in electrodeposited nanocrystalline Ni, Appl. Phys. Lett., 88, 2, (2006)
[4]
Chen M., Ma E., Hemker K.J., Sheng H., Wang Y., Cheng X., Deformation twinning in nanocrystalline aluminum, Science (80-), 300, 5623, (2003)
[5]
Misra A., Hirth J.P., Hoagland R.G., Length-scale-dependent deformation mechanisms in incoherent metallic multilayered composites, Acta Mater, 53, 18, pp. 4817-4824, (2005)
[6]
Demkowicz M.J., Hoagland R.G., Hirth J.P., Interface Structure and Radiation Damage Resistance in Cu-Nb Multilayer Nanocomposite, Phys. Rev. Lett., 100, (2008)
[7]
Wang J., Hoagland R.G., Hirth J.P., Misra A., Atomistic modeling of the interaction of glide dislocations with ‘weak’ interfaces, Acta Mater, 56, 19, pp. 5685-5693, (2008)
[8]
Demkowicz M.J., Argon A.S., Farkas D., Frary M., Simulation of plasticity in nanocrystalline silicon, Philos. Mag., 87, 28, pp. 4253-4271, (2007)
[9]
Mukherjee A.K., An examination of the constitutive equation for elevated temperature plasticity, Mater. Sci. Eng. A, 322, 1, pp. 1-22, (2002)
[10]
Lu L., Shen Y., Chen X., Qian L., Lu K., Ultrahigh strength and high electrical conductivity in copper, Science, 304, 5669, (2004)