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[1]X. Hu, L. Qi, C.Q. Liu, H.W. Chen, X.Y. Zhang, H.G. Yan, K.C. Zhou, M. Song, Formation mechanism of stacking faults within α′′ martensite in Ti-7 wt%Mo alloy.J. Alloy. Compd. 934 (2023) 168039., 2022
[2]C.Q. Liu, X. Hu, L. Qi, H.W. Chen, Z.Q. Li, X.Y. Zhang, H.G. Yan, K.C. Zhou, M. Song, Y.Z. Wang, J.F. Nie, Unusual precipitation induced by solute segregation in coherent twin boundary in titanium alloys.Acta Mater. 242 (2023) 118466., 2022
[3]C.P. Zhu, X.Y. Zhang, C. Li, C.Q. Liu, K.C. Zhou, A strengthening strategy for metastable β titanium alloys: Synergy effect of primary α phase and β phase stability.Mater. Sci. Eng. A 852 (2022) 143736., 2022
[4]C.Q. Liu, Z.Y. Xie, L. Qi, H.W. Chen, M. Song, Phase transformation generating coherent twin boundaries in titanium alloys.Mater. Lett. 322 (2022) 132515, 2022
[5]C.Q. Liu, H.W. Chen, M. Song, J.F. Nie, Ordered Sn distribution adjacent to the precipitate-matrix interface in a Mg–9.8wt.%Sn alloy.J. Magnes. Alloy. 10 (2022) 1909-1914, 2022
[6]H.C. Tang, Y. Liu, C.Q. Liu, D.P. Zhao, M. Song, Achieving high strength and large ductility via Zr-rich stripes in Ti-15Zr alloy.Mater. Lett. 322 (2022) 132515, 2022
[7]Q. Zhao, X.P. Gan, C.Q. Liu, H.W. Xiong, K.C. Zhou, Mechanical behavior and microstructure of 3D-printed carbon nanotubes-reinforced Cu composite.Diam. Relat. Mater. 120 (2021) 108651., 2021
[8]C.P. Zhu, G.W. Peng, Y.C. Lin, X.Y. Zhang, C.Q. Liu, K.C. Zhou, Effects of Mo and Cr contents on microstructures and mechanical properties of near β-Ti alloy.Mater. Sci. Eng. A 825 (2021) 141882, 2021
[9]C.Q. Liu, H.W. Chen, M. Song, J.F. Nie, Electron beam irradiation induced metastable phase in a Mg?9.8 wt%Sn alloy.J. Mater. Sci. Technol. 84 (2021) 133-138, 2021
[10]C.Q. Liu, Y. Li, S. Ni, M. Song, Phase transition and twinning induced high strength and large ductility of a near β-Ti alloy processed by double aging.J. Mater. Eng. Perform. 30 (2021) 5914-5920., 2021
[11]C.J. Yan, Y.C. Xin, X.B. Chen, D.K. Xu, P.K. Chu, C.Q. Liu, B. Guan, X. Huang, Q. Liu, Evading strength-corrosion tradeoff in Mg alloys via dense ultrafine twins.Nat. Commun. 12 (2021) 4616, 2021
[12]B.W. Cheng, C.Q. Liu, M. Song, A comparison of the microstructures and mechanical properties of a GH648 superalloy fabricated by selective laser melting and casting.Mater. Sci. Eng. A 813 (2021) 141178., 2021
[13]C.Q. Liu, C. He, H.W. Chen, J.F. Nie, Precipitation on stacking faults in Mg–9.8wt%Sn alloy.J. Mater. Sci. Technol., 2020, 45: 230-240.
[14]C. He, Y. Zhang, C.Q. Liu, Y. Yue, H.W. Chen, J.F. Nie, Unexpected partial dislocations within stacking faults in a cold deformed Mg-Bi alloy.Acta Mater., 2020, 188: 328-343.
[15]C. He, C.Q. Liu, H.W. Chen, J.F. Nie, Enhanced age-hardening response in Mg–Zn–Co alloys with Bi additions.J. Alloy. Comp., 2020, 815: 152419.
[16]C.Q. Liu, H.W. Chen, N. Wilson, J.F. Nie, Zn segregation in interface between Mg17Al12 precipitate and Mg matrix in AZ93 alloy.Scripta Mater., 2019, 163: 91-95.
[17]C.Q. Liu, H.W. Chen, N. Wilson, J.F. Nie, Twin-like fault in Mg–9.8wt%Sn alloy.Scripta Mater., 2018, 155: 89-93.
[18]H. Zhang1, C.Q. Liu1, Y.M. Zhu, H.W. Chen, L. Bourgeois, J.F. Nie, Revisiting building block ordering of long-period stacking ordered structures in Mg–Y–Al alloys.Acta Mater., 2018, 152: 96-106.
[19]C.Q. Liu, H.W. Chen, H. Liu, X.J. Zhao, J.F. Nie, Metastable precipitate phases in Mg–9.8wt%Sn alloy.Acta Mater., 2018, 144: 590-600.
[20]C.Q. Liu, C.L. Liu, H.W. Chen, J.F. Nie, Heat-treatable Mg–9Al–6Sn–3Zn extrusion alloy.J. Mater. Sci. Technol., 2018, 34: 284-290.
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