- [1]Z. Zhang, Y. Gao, J. Cheng, X. Gan*, C.Q. Liu*, K. Zhou, Reduction in Coefficient of Thermal Expansion of Cu-Based Self-Lubricating Composites without Decreasing Wear Resistance by the Addition of Ni50Fe.Advanced Engineering Materials 27(10) (2025) 2402267, 2026
- [2]Z. Zhang, Y. Gao, J. Cheng, D. Xie, C.Q. Liu*, K. Zhou, X. Gan*, Sliding wear map and wear mechanisms of Cu-15Ni-8Sn-MoS2 self-lubricating composites under oil lubrication.Wear 584-585 (2026) 206405, 2026
- [3]Z. Zhang, J. Lu, C.Q Liu*, X. Gan*, Enhancing the thermal conductivity of Kovar alloys without increasing their thermal expansion coefficient through the incorporation of an Ag network.Materials Letters 389 (2025) 138374, 2025
- [4]M. Hu, C.Q. Liu*, X. Zhang, H. Chen, X. Gan*, Deformation mechanisms of the Cu-15Ni-8Sn-0.18Nb alloy in as-quenched and aged conditions.Materials Science and Engineering: A 919 (2025) 147477, 2025
- [5]T. Zhang, C.Q Liu*, Y. Gao, Y. Li, X. Gan*, Hardenability and evolution of microstructure and mechanical properties during subsequent aging process of Cu-15Ni-8Sn-0.26Nb alloy.Materials Science and Engineering: A 947 (2025) 149201, 2025
- [6]Y. Liu, C.Q. Liu*, S. Ni, M. Song, Influence of pre-compression and pre-aging on precipitation behavior in casting Mg-9.8Sn-3.0Zn alloy.Journal of Central South University 32(8) (2025) 2783-2794, 2025
- [7]X. Hu, C.Q. Liu*, Z. Wu, M. Song*, Formation mechanism of β precipitate within α′ martensite in α+β titanium alloys.Scripta Materialia 262 (2025) 116632, 2025
- [8]M. Hu, X. Zhang, C.Q. Liu*, X. Gan*, Evolution of microstructure and mechanical properties during hot forging and heat treatments of Cu-15Ni-8Sn alloy fabricated by hot isostatic pressing.Journal of Alloys and Compounds 1010 (2025) 178111, 2025
- [9]C.Q Liu, Y. Yue, S. Ma, X. Gan, H. Chen*, J.F. Nie*, Interfacial dislocation induced precipitation in a Mg?Gd?Zn?Zr alloy.Acta Materialia 284 (2025) 120583, 2025
- [10]Z. Song, Y. Gao, Z. Zhang, C.Q. Liu*, M. Hu, Y. Li, X. Gan*, Microstructure and Tribological Properties of Cu-15Ni-8Sn Coating Sprayed by HVAF.Journal of Materials Engineering and Performance 34 (2025) 23372-23382, 2025
- [11]Y. Gao, Z. Zhang, J. Cheng, C.Q. Liu*, K. Zhou, X. Gan*, Low-temperature oxidation behaviors of Cu-15Ni-8Sn alloy in different aging conditions.Materials Characterization 218 (2024) 114519, 2024
- [12]Z. Zhang, Y. Gao, J. Cheng, X. Gan*, C.Q Liu*, K. Zhou, Development of Cu-15Ni-8Sn/MoS2 self-lubricating composites with desirable mechanical and friction properties.Wear 550-551 (2024) 205428, 2024
- [13]Z. Zhang, Y. Gao, J. Cheng, X. Gan*, C.Q. Liu*, K. Zhou, Microstructures and properties of Cu/50 vol% MoS2 composites prepared with Cu-coated MoS2 powders and sintered at different temperatures.Tribology International 199 (2024) 109967, 2024
- [14]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
- [15]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
- [16]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
- [17]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
- [18]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
- [19]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
- [20]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
