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Z. G. Zhu, P. Wen, D. P. Wang, R. J. Xue, D. Q. Zhao, and W. H. Wang, Characterization of flow units in metallic glass through structural relaxations, JOURNAL OF APPLIED PHYSICS 114, 083512 (2013)
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M.B. Tang et al. Constant-volume heat capacity at glass transition Journal of Alloys and Compounds 577 (2013) 299–302
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Hai-Bin Yu, Wei-Hua Wang and Konrad Samwer, The b relaxation in metallic glasses: an Overview, Materials Today, Volume 16, Number 5, May 2013
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Y. Wei et al. Towards more uniform deformation in metallic glasses: The role of Poisson’s ratio, Materials Science & Engineering A 560 (2013) 510–517
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Xianqi Lei, Yujie Wei, Zheng Hu and Wei-Hua Wang, Strength softening at shear bands in metallic glasses, Philosophical Magazine Letters, 93:4, 221-230
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S.T. Liu, W. Jiao, B.A. Sun, W.H. Wang, A quasi-phase perspective on flow units of glass transition and plastic flow in metallic glasses, Journal of Non-Crystalline Solids 376 (2013) 76–80
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B. Huang, Y. F. Yang, and W. H. Wang, Kondo effect and non-Fermi liquid behavior in metallic glasses containing Yb, Ce, and Sm, JOURNAL OF APPLIED PHYSICS 113, 163505 (2013)
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B. A. Sun, S. Pauly,J. Hu, W. H. Wang, U. Kuhn,and J. Ecker, Origin of Intermittent Plastic Flow and Instability of Shear Band Sliding in Bulk Metallic Glasses, PRL 110, 225501 (2013)
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L.S. Huo et al. The dependence of shear modulus on dynamic relaxation and
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M T Sandor1, H B Ke2, W H Wang2 and Y Wu, Anelasticity-induced increase of theAl-centered local symmetry in themetallic glass La50Ni15Al35, J. Phys.: Condens. Matter 25 (2013) 165701 (5pp)
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