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[21]J. Peng, Q.H. Fang, Y.W. Liu, B. Liu*, P.H. Wen, Influence of nanoscale amorphization on emission of dislocations from a finite length crack tip in nanocrystalline materials, Engineering Fracture Mechanics, 2016, 163: 487-498.
[22]B. Liu*, J. Wang, Y. Liu, Q. Fang, Y. Wu, S. Chen, C.T. Liu, Microstructure and mechanical properties of equimolar FeCoCrNi high entropy alloy prepared via powder extrusion, Intermetallics, 2016, 75: 25-30.
[23]H. Feng, Q.H. Fang, B. Liu*, Y. Liu, Y.W. Liu, P.H. Wen, Nucleation and growth mechanisms of nanoscale deformation twins in hexagonal-close-packed metal magnesium, Mechanics of Materials, 2017, 109: 26-33.
[24]Can-xu Zhou, Bin Liu*, Yong Liu, Cong-zhang Qiu, Hui-zhong Li, Yue-hui He, Effect of carbon on high temperature compressive and creep properties of β-stabilized TiAl alloy, Transactions of Nonferrous Metals Society of China, 2017, 11: 2400-2405.
[25]J. Li, B. Liu*, Q.H. Fang, Z.W. Huang, Y.W. Liu, Atomic-scale strengthening mechanism of dislocation-obstacle interaction in silicon carbide particle-reinforced copper matrix nanocomposites, Ceramics International, 2017, 43: 3839-3846.
[26]Tianchen Li, Y. Liu, B. Liu*, W. Guo, L. Xu, Microstructure and Wear Behavior of FeCoCrNiMo0. 2 High Entropy Coatings Prepared by Air Plasma Spray and the High Velocity Oxy-Fuel Spray Processes, Coatings, 2017, 7: 151-165.
[27]Chunjie Xiang, Y. Liu, B. Liu*, Y. Cao, Z. Gan, Characterization of hot deformation behavior of Ti-3Al-5Mo-4.5V alloy with a martensitic starting microstructure, Journal of Micromechanics and Molecular Physics, 2017, 2: 1750011-1750024.
[28]Jiawen Wang, Y. Liu, B. Liu*, Y. Wang, Y. Cao, T. Li, R. Zhou, Flow behavior and microstructures of powder metallurgical CrFeCoNiMo0.2 high entropy alloy during high temperature deformation, Materials Science and Engineering A, 2017, 689: 233-242.
[29]B. Liu*, J. Wang, J. Chen, Q. Fang, Y. Liu, Ultra-High Strength TiC/Refractory High-Entropy- Alloy Composite Prepared by Powder Metallurgy, JOM, 2017, 69: 651-656
[30]Wang, ZP, Fang, QH, Li J, Liu B*. First-principles predictions of structural, mechanical and electronic properties of β-TiNb under high pressure, Superlattices and Microstructures, 2018, 116:141-150.
[31]Li T, Liu B*, Liu Y., Guo W., Fu A., Li L., Yan N., Fang, Q. Microstructure and mechanical properties of particulate reinforced NbMoCrTiAl high entropy based composite, Entropy, 2018, 20 (7):1-9.
[32]Xu, R., Liu, B*., Liu, Y., Cao, Y., Guo, W., Nie, Y., Liu, S. High temperature deformation behavior of in-situ synthesized titanium-based composite reinforced with ultra-fine TiB whiskers, Materials, 2018, 11 (10), 1863
[33]Fang, Q., Wang, Q., Li, J., Chen, E., Liu, B*., Wen, P. A systematic investigation of cycle number, temperature and electric field strength effects on Si anode, Materials and Design, 2018, 144:1-13.
[34]Liu, B*., Xu, L.Y., Liu, Y., Wang, J.S., Wang, J.W., Fang, Q.H. Effect of cold working and annealing on microstructure and properties of powder metallurgy high entropy alloy, Science China-Technological Sciences,2018, 61 (2):197-203.
[35]Kun ZHAO, Si-hui OUYANG, Yong LIU, Bin LIU*, Xiao-peng LIANG, Hui-zhong LI, Yu WANG. Isothermal oxidation behavior of TiAl intermetallics with different oxygen contents. Transactions of Nonferrous Metals Society of China, 29(2019) 526-533.
[36]Yuankui Cao, Yong Liu*, Yunping Li, Bin Liu*, Jiawen Wang, Meng Du, Ruiping Liu. Precipitation strengthening in a hot-worked TiNbTa0.5ZrAl0.5 refractory high entropy alloy. Materials Letters, 246 (2019) 186–189.
[37]Cui Zhang, Bin Liu*, Yong Liu, Qihong Fang, Wenmin Guo**, Hu Yang. Effects of Annealing on Microstructure and Mechanical Properties of Metastable Powder Metallurgy CoCrFeNiMo0.2 High Entropy Alloy. Entropy 2019, 21(5), 448
[38]Sihui Ouyang, Bin Liu*, Yong Liu, Xiang Zan, Xiaopeng Liang, Zheng Li, Dynamic tensile behavior of PM Ti-47Al-2Nb-2Cr-0.2W intermetallics at elevated temperatures. Transactions of Nonferrous Metals Society of China, 2019, 29 ( 6):1252-1262
[39]Jingwen Qiu, Zhengfan Fu, Bin Liu*, Yong Liu, Jianhui Yan, Di Pan, Weidong Zhang, Yu Wang, Wear Behavior of P/M High Nb containing γ-TiAl alloy in Different Environments, Metals and Materials International, 25 (2019) 1564–1573
[40]Jingwen Qiu, Canxu Zhou, Bin Liu*, Yong Liu*, Huizhong Li, Xiaopeng Liang, Xiang Zan, Precipitation behavior of Ti-45Al-3Fe-2Mo-0.5C intermetallics after creep tests at 750 °C, Materials Characterization, 2019, 155, 109825.
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