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[31] F. Wang, Y.F. Liang, S. Shang, J.P. Lin. Materials & Design, 2015, 83:508-513. Phase transformation in Ti–48Al–6Nb porous alloys and its influence on pore properties.
[32] L. Fang, J.P. Lin, X.F. Ding. Materials Chemistry & Physics, 2015, 167:112-118. Thermal cycling induced microstructural instability in fully lamellar Ti–45Al–8.5Nb–(W, B, Y) alloys.
[33] Y. S. Wang, G. J. Hao, Y. Zhang, J. P. Lin and J. W. Qiao. Metallurgical and Materials Transactions A, 2014, 45:2357-2362. Fabrication and mechanical characterization of Ti-based metallic glass matrix composites by the bridgman solidification..
[34] L. Song, X. J. Xu, L. You, Y. F. Liang, J. P. Lin. Journal of Alloys and Compounds, 2014, 616:483-491. Phase transformation and decomposition mechanisms of the ω phase in cast high Nb containing TiAl alloy..
[35] J. P. Lin, X. J. Xu, L. Q. Zhang, Y. F. Liang, Y. Xu, G. J. Hao. TMS2014,Gamma TiAl Alloys 2014,Feb.16-20, San Diego, California, USA, p.108. Alloy design concepts for wrought high temperature TiAl alloys..
[36] L. Song, L. Q. Zhang, X. J. Xu, J. Sun and J. P. Lin. Scripta Materialia, 2013, 68:929-932. Omega phase in as-cast high-Nb-containing TiAl alloy..
[37] F. Yang, M. Tane, J. P. Lin, Y. H. Song, H. Nakajima. Materials and Design, 2013, 49:755–760. Pore formation and compressive deformation in porous TiAl–Nb alloys containing directional pores..
[38] H. Z. Cao, D. H. Lu, J. P. Lin, Q. Ye, J. J. Wu, G. Q. Zheng. Electrochimica Acta,2013, 91:234-239. Novel Sb-doped ruthenium oxide electrode with ordered nanotube structure and its electrocatalytic activity toward chlorine evolution..
[39] F. Yang, L. Q. Zhang, J. P. Lin, Y. F. Liang, Y. H. He, S. L. Shang, Z. K. Liu. Intermetallics, 2013, 33:2-7. Pore structure and gas permeability of high Nb-containing TiAl porous alloys by elemental powder metallurgy for microfiltration application..
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