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[1]S. F. Liu, Y. Wu, H. T. Wang, J. Y. He, J. B. Liu, C. X. Chen, X. J. Liu, H. Wang, Z. P. Lu, Stacking fault energy of face-centered-cubic high entropy alloys. Intermetallics 2018, 93: 269-273.
[2]Y. Wu, F. Zhang, Z. P. Lu, Ultra-strong magnesium alloy with novel nanostructures. Science China-Technological Sciences 2017, 60(11): 1769-1770
[3]Y. Wu, W. L. Song, J. Zhou, D. Cao, H. Wang, X. J. Liu, Z. P. Lu, Ductilization of bulk metallic glassy material and its mechanism. Acta Physica Sinica 2017, 66(17): 176111.
[4]H. L. Huang, Y. Wu*, J. Y. He, H. Wang, X. J. Liu, K. An, W. Wu, Z. P. Lu*, Phase-transforamtion ductilization of brittle high-entropy alloys via metastability engineering. Adv. Mater. 2017, 1701678.
[5]F. Zhang, Y. Wu*, H. B. Lou, Z. D. Zeng, V. B. Prakapenka, E. Greenberg, Y. Ren, J. Y. Yan, J. S. Okasinski, X. J. Liu, Y. Liu, Q. S. Zeng, Z. P. Lu*, Polymorphism in a high-entropy alloy. Nat. Commun. 2017, 8: 15687.
[6]S. H. Jiang, H. Wang, Y. Wu, X. J. Liu, H. H. Chen, M. J. Yao, B. Gault, D. Ponge, D. Raabe, A. Hirata, M. W. Chen, Y. D. Wang, Z. P. Lu, Ultrastrong steel via minimal lattice misfit and high-density nanoprecipitation. Nature 2017, 544, 7651.
[7]J. Y. He, H. Wang, Y. Wu, X. J. Liu, T. G. Nieh, Z. P. Lu, High-temperature plastic flow of a precipitation-hardened FeCoNiCr high entropy alloy. Mater. Sci. Eng. A 2017, 686: 34-40.
[8]Z. Fan, H. Wang, Y. Wu, X. J. Liu, Z. P. Lu, Thermoelectric performance of PbSnTeSe high-entropy alloys. Mater. Res. Lett. 2017, 5 (3): 187-194.
[9]Y. Yuan, Y. Wu*, X. Tong, H. Zhang, H. Wang, X. J. Liu, L. Ma, H. L. Suo, Z. P. Lu*, Rare-earth high-entropy alloys with giant magnetocaloric effect, Acta Mater., 2017, 125: 481-489.
[10]Y. Wu, D. Ma, Q.K. Li, A.D. Stoica, W.L. Song, H. Wang, X.J. Liu, G.M. Stoica, G.Y. Wang, K. An, X.L. Wang, Mo Li, Z.P. Lu, Transformation-induced plasticity in bulk metallic glass composites evidenced by in-situ neutron diffraction, Acta Mater., 2017, 124: 478-488
[11]J. Y. He, H. Wang, Y. Wu, X. J. Liu, T. G. Nieh, Z. P. Lu, High-temperature plastic flow of a precipitation-hardened FeCoNiCr high entropy alloy. Mater. Sci. & Eng. A 2017, 686: 34-40.
[12]H. Y. Fan, X. J. Liu, H. Wang, Y. Wu, H. Wang, Z. P. Lu, Mechanical heterogeneity and its relation with glass -forming ability in Zr-Cu and Zr-Cu-Al metallic glasses. Intermetallics 2017, 90: 159-163.
[13]Y. Wu, H. X. Li, J. E. Gao, H. Wang, X. J. Liu, M. K. Miller, H. Bei, Y. F. Gao, Z. P. Lu, Nanocrystallization in a Cu-doped Fe-based metallic glass, Journal of Alloys and Compounds, 2016, 688: 822-827.
[14]Wenli Song, Yuan Wu,* Hui Wang, Xiongjun Liu, Houwen Chen, Zhenxi Guo, and Zhaoping Lu*, Microstructural control via copious nucleation manipulated by in-situ formed inoculants: large-sized and ductile metallic glass composites, Advanced Materials. 2016, 28: 8156-8161.
[15]H. Wang, X. M. Chu, Y. Wu*, X. J. Liu, Z. P. Lu, Mold-filling Ability of Aluminum Alloy Melt during the Two-step Foaming Process. Journal of Materials Science & Technology. 2016, 32: 509-514.
[16]W. X. Zhao, Y. Wu*, H. Wang, X. J. Liu, Z. P. Lu, Micro-alloying effects of yttrium on recrystallization behaviour of an alumina-forming austenitic stainless steel. Journal of iron & steel research international. 2016, 23: 553-558.
[17]Z. Fan, H. Wang, Y. Wu*, X. J. Liu, Z. P. Lu, Thermoelectric high-entropy alloys with low lattice thermal conductivity, RSC Advances. 2016, 6(57): 52164-52170.
[18]D. Cao, Y. Wu*, H. Wang, X. J. Liu, Z. P. Lu, Effects of Nitrogen on the Glass Formation and Mechanical Properties of a Ti-Based Metallic Glass. Acta Metall. Sin. (Engl. Lett.), 2016, 29(2): 173–180.
[19]Y. Liu, J. S. Wang, Q. H. Fang, B. Liu, Y. Wu, S. Q. Chen, Preparation of superfine-grainedhigh entropy alloy by spark plasma sintering gas atomized powder,Intermetallics, 2016, 68: 16-22.
[20]Y. Wu, A.D. Stoica, Y. Ren, D. Ma, Y.F. Gao, H. Bei, Direct synchrotron x-ray measurements of local strain fields in elastically and plastically bent metallic glasses. Intermetallics 2015, 67: 132.