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[1] L. Song, F. Appel, L. Wang, M. Oehring, X.G. Hu, A. Stark, J.Y. He, U. Lorenz, T.B. Zhang, J.P. Lin, F. Pyczak. Acta Materialia,2020, 186:575-58..
[2] B. Zhang, Y.F. Liang, S.B. Wen, S. Wang, X.J. Shi, F. Ye, J.P. Lin. Journal of Magnetism and Magnetic Materials, 2019, 474:51-55. High-strength low-iron-loss silicon steels fabricated by cold rolling.
[3] J. Ding, M.H. Zhang, Y.F. Liang, Y. Ren, C.L. Dong. Acta Materialia, 2018, 161:1-11. Enhanced high-temperature tensile property by gradient twin structure of duplex high-Nb-containing TiAl alloy.
[4] S.M. Hao, H. Zhang, W. Yao, J.P. Lin. Journal of Power Sources, 2018, 393:128-134. Solid-state lithium battery chemistries achieving high cycle performance at room temperature by a new garnet-based composite electrolyte.
[5] J. Ding, M.H. Zhang, T. Ye, Y.F. Liang, Y. Ren, C.L. Dong, J.P. Lin. Acta Materialia, 2018, 145:504-515. Microstructure stability and micro-mechanical behavior of as-cast gamma-TiAl alloy during high-temperature low cycle fatigue.
[6] W.Y. Gui, J.P. Lin, G.J Hao, Y.H. Qu, Y.F. Liang H. Zhang. Scientific Reports, 2017, 7:308-315. Electrolytic plasma processing-innovative treatment for surface modification of 304 stainless steel.
[7] W. Kan, B. Chen, C. Jin, H. Peng, J. Lin. Materials and Design, 2018, 160:611-623. Microstructure and mechanical properties of a high Nb-TiAl alloy fabricated by electron beam melting⁎.
[8] T. Ye, L. Song, S.B. Gao, Y.F. Liang, Y.L. Wang, J.P. Lin. Journal of Alloys and Compounds, 2017, 701 (15):882–891. Precipitation behavior of the ωo phase in an annealed high Nb-TiAl alloy..
[9] L.Yang, L.H. Chai, Y.F. Liang, J.P. Lin. Intermetallics, 2015, 66:149-155. Numerical simulation and experimental verification of gravity and centrifugal investment casting low pressure turbine blades for high Nb–TiAl alloy..
[10] Y.S. Wang, X.H. Sun, G.J. Hao, J.P. Lin. Metallurgical & Materials Transactions A, 2015:1-6. Fracture Morphology and Local Deformation Characteristics in the Metallic Glass Matrix Composite Under Tension..
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