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[11] Z.Z. Shen, J.P. Lin, Y.F. Liang. Intermetallics, 2015, 67:19-25. A novel hot pack rolling of high Nb–TiAl sheet from cast ingot..
[12] Y.F. Liang, X.J. Xu, J.P. Lin. Rare Metals, 2016, 35(1):15-25. Advances in phase relationship for high Nb-containing TiAl alloys..
[13] Y.S. Wang, G.J. Hao, Y. Zhang, J.P. Lin. Intermetallics, 2015, 67:121-126. Effect of temperature on mechanical properties of Ti-based metallic glass matrix composite..
[14] S. Xu, X. Xu, Y. Xu, J. Lin. Materials & Design, 2016, 101:88-94. Phase transformations and phase equilibria of a Ti-46.5Al-16.5Nb alloy..
[15] F. Wang, J.P. Lin, Y.F Liang, J.P. Lin. Materials & Design, 2016, 109:700-708. Fabrication of nano-porous γ-Al2O3, layers on porous Ti-48Al-6Nb alloys..
[16] W.Y Gui, G.J Hao, Y.F. Liang, J.P. Lin. Applied Surface Science, 2016, 389:1161-1168. Surface Modification by Electrolytic Plasma Processing for High Nb-TiAl Alloys..
[17] S.B. Gao, X.J. Xu, Z.Z. Shen, J.P. Lin. Materials Science & Engineering A, 2016, 677:89-96. Microstructure and properties of forged plasma arc melted pilot ingot of Ti-45Al-8.5Nb-(W, B, Y) alloy..
[18] X. Yang, X. Ding, G. Hao, J.P. Lin. Plasma Chemistry & Plasma Processing, 2016:1-11. Cathodic Plasma Electrolysis Processing for Metal Coating Deposition..
[19] L. Fang, J.P. Lin, Y.F. Liang, J.P. Lin. Intermetallics, 2016, 78:8-16. Microstructural instability in surface layer of a high Nb-TiAl alloy processed by shot peening following high temperature exposure..
[20] W.Y. Gui, J.P. Lin, G.J. Hao, J.P. Lin. Nanoscience and Nanotechnology Letters, 2016, 8(5): 428-433. Light-triggered drug release platform based on superhydrophobicity of mesoporous silica nanoparticles..
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