ICF13A

13th International Conference on Fracture June 16–21, 2013, Beijing, China -5- metallic glass. Mater Sci Eng A, 473 (2008) 1-2105-110. [9] M.Q. Jiang, L.H. Dai, On the origin of shear banding instability in metallic glasses. J Mech Phys Solids, 57 (2009) 81267-1292. [10] S.X. Song, T.G. Nieh, Direct measurements of shear band propagation in metallic glasses – An overview. Intermetallics, 19 (2011) 121968-1977. [11] P. Wesseling, T.G. Nieh, W.H. Wang, J.J. Lewandowski, Preliminary assessment of flow, notch toughness, and high temperature behavior of CU60Zr20Hf10Ti10 bulk metallic glass. Scripta Materialia, 51 (2004) 2151-154. [12] D.H. Xu, G. Duan, W.L. Johnson, C. Garland, Formation and properties of new Ni-based amorphous alloys with critical casting thickness up to 5 mm. Acta Materialia, 52 (2004) 123493-3497. [13] X. Gu, T. Jiao, L.J. Kecskes, R.H. Woodman, C. Fan, K.T. Ramesh, T.C. Hufnagel, Crystallization and mechanical behavior of (Hf, Zr)–Ti–Cu–Ni–Al metallic glasses. J Non-Cryst Solids, 317 (2003) 1-2112-117. [14] A.S. Argon, PLASTIC-DEFORMATION IN METALLIC GLASSES. Acta Metall, 27 (1979) 147-58. [15] F.Spaepen, A microscopic mechanism for steady state inhomogeneous flow in metallic glasses. Acta Mater, 23:615 (1977). [16] R.D. Conner, W.L. Johnson, N.E. Paton, W.D. Nix, Shear bands and cracking of metallic glass plates in bending. J Appl Phys, 94 (2003) 2904. [17] R.D. Conner, Y. Li, W.D. Nix, W.L. Johnson, Shear band spacing under bending of Zr-based metallic glass plates. Acta Mater, 52 (2004) 82429-2434. [18] H. Zhang, S. Maiti, G. Subhash, Evolution of shear bands in bulk metallic glasses under dynamic loading. J Mech Phys Solids, 56 (2008) 62171-2187. [19] M.Q. Jiang, L.H. Dai, Formation mechanism of lamellar chips during machining of bulk metallic glass. Acta Mater, 57 (2009) 92730-2738. [20] A. Molinari, Collective behavior and spacing of adiabatic shear bands. J Mech Phys Solids, 45 (1997) 91551-1575. [21] X.Gu, K.J.T.Livi, T.C.Hufnagel, Mater.Res.Soc.Proc.754:CC7.9.1, (2003). [22] M.Q. Jiang, L.H. Dai, Shear-band toughness of bulk metallic glasses. Acta Mater, 59 (2011) 114525-4537. [23] J. Li, F. Spaepen, T.C. Hufnagel, Nanometre-scale defects in shear bands in a metallic glass. Philos Mag, 82 (2002) 132623-2630. [24] A. Furukawa, H. Tanaka, Inhomogeneous flow and fracture of glassy materials. Nature Materials, 8 (2009) 7601-609. [25] S.X. Song, T.G. Nieh, Flow serration and shear-band viscosity during inhomogeneous deformation of a Zr-based bulk metallic glass. Intermetallics, 17 (2009) 9762-767. [26] J.J. Lewandowski, A.L. Greer, Temperature rise at shear bands in metallic glasses. Nature Materials, 5 (2006) 115-18. [27] D.B. Miracle, A. Concustell, Y. Zhang, A.R. Yavari, A.L. Greer, Shear bands in metallic glasses: Size effects on thermal profiles. Acta Mater, 59 (2011) 72831-2840. [28] B. Yang, C.T. Liu, T.G. Nieh, M.L. Morrison, P.K. Liaw, R.A. Buchanan, Localized heating and fracture criterion for bulk metallic glasses. J Mater Res, 21 (2006) 04915-922. [29] H. Guo, J. Wen, N.M. Xiao, Z.F. Zhang, M.L. Sui, The more shearing, the thicker shear band and heat-affected zone in bulk metallic glass. J Mater Res, 23 (2008) 082133-2138. [30] L.F. Liu, L.H. Dai, Y.L. Bai, B.C. Wei, G.S. Yu, Strain rate-dependent compressive deformation behavior of Nd-based bulk metallic glass. Intermetallics, 13 (2005) 8827-832. [31] D.E. Grady, Adiabatic shear failure in brittle solids. Int J Impact Eng, 38 (2011) 7661-667. [32] Y.L.Bai, B.Dodd. Vol. Adiabatic Shear Localization.Pergamon Press,Oxford. 1992. [33] D.E. Grady, M.E. Kipp, THE GROWTH OF UNSTABLE THERMOPLASTIC SHEAR

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