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Q&P钢:
[1] X.D. Tan, Y.B. Xu,D. Ponge, X.L. Yang, Z.P. Hu, F. Peng, X.W. Ju, D. Wu, D. Raabe, Effectof intercritical deformation on microstructure and mechanical properties of alow-silicon aluminum-added hot-rolled directly quenched and partitioned steel,Mater. Sci. Eng. A. 656 (2016) 200-215. (SCI)
[2] X.D. Tan, Y.B. Xu,X.L. Yang, Z.P. Hu, F. Peng, X.W. Ju, Y.M. Yu, D. Wu, Microstructure andtensile deformation behavior of a hot-rolled directly quenched and dynamicallypartitioned steel containing proeutectoid ferrite, Mater. Sci. Forum.817 (2015) 246-251. (EI)
[3] X.D. Tan, X.L.Yang, Y.B. Xu, Z.P. Hu, F. Peng, H. Zhang, Y.M. Yu, D. Wu, Effect of ferritestatus on mechanical properties of hot-rolled directly quenched and partitionedsteel, Mater. Sci. Forum. 816 (2015) 736-742. (EI)
[4] X.D. Tan, Y.B. Xu,X.L. Yang, Z.P. Hu, F. Peng, X.W. Ju, D. Wu, Austenite stabilization and highstrength-elongation product of a low silicon aluminum-free hot-rolled directlyquenched and dynamically partitioned steel,Mater. Charact. 104 (2015) 23-30. (SCI)
[5] Y.B. Xu, X.D.Tan, X.L. Yang, Z.P. Hu, F. Peng, D. Wu, G.D. Wang, Microstructureevolution and mechanical properties of a hot-rolled directly quenched andpartitioned steel containing proeutectoid ferrite, Mater. Sci. Eng. A. 607(2014) 460-475. (SCI)
[6] 谭小东,许云波,杨小龙,吴迪,一步淬火分配钢的工艺设计与微观组织演变,东北大学学报自然科学版. 35(2014) 681-685. (EI)
[7] X.D Tan, Y.B. Xu,X.L. Yang, Z.Q. Liu, D. Wu, Effect of partitioning procedure on microstructureand mechanical properties of a hot-rolled directly quenched and partitioned steel,Mater. Sci. Eng. A. 594 (2014) 149-160. (SCI)
[8] X.D. Tan, Y.B. Xu,X.L. Yang, D. Wu, Microstructure-properties relationship in aone-step quenched and partitioned steel, Mater. Sci. Eng. A. 589(2014) 101-111. (SCI)
中锰钢:
[1] Y.B. Xu, Z.P. Hu, Y. Zou, X.D. Tan, D.T. Han, S.Q. Chen, D.G. Ma, Effect of two-stepintercritical annealing on microstructure and mechanical properties ofhot-rolled medium manganese TRIP steel containing δ-ferrite, Mater. Sci. Eng.A. 688 (2017) 40-55. (SCI)
[2] Y. Zou, Y.B. Xu, Z.P. Hu, X.L. Yang, X.D. Tan, S.C. Yu, H. Liu, Y.M.Yu, Microstructure and mechanical properties of medium manganese steel platewith high strength and toughness, Mater. Sci. Forum. 879 (2016), 879:2293-2299. (EI)
[3] Y. Zou, Y.B. Xu, Z.P. Hu, X.L. Gu, F. Peng, X.D. Tan, S.Q. Chen, D.T. Han,R.D.K. Misra, G.D. Wang, Austenite stability and its effect on the toughness ofa high strength ultra-low carbon medium manganese steel plate, Mater. Sci. Eng.A. 675 (2016) 153-163. (SCI)
[4] 胡智评,许云波,谭小东,一种Mn-Al系TRIP钢的临界区奥氏体稳定化研究,东北大学学报自然科学版. 37(2016) 179-183. (EI)
[5] Z.P. Hu, Y.B. Xu, X.D. Tan, X.L. Yang, Y.M. Yu, Microstructure and mechanicalproperties of a cold-rolled medium manganese steel with delta ferrite, Mater.Sci. Forum. 816 (2015) 750-754. (EI)
DP钢及TRIP钢:
[1] K. Zhou, Y. Zou, Y. B. Xu, Z. P. Hu, X. D. Tan, X. L. Yang, Y. M. Yu,H. Zhan, Effect of continuous annealing temperature on microstructure andmechanical properties of a high strength cold-rolled DP980 steel, Mater. Sci.Forum. 879 (2016), 879: 2144-2149. (EI)
[2] X.D. Tan, Z.Q.Liu, Y.B. Xu, X.L. Yang, D. Wu, TRIP effect in a hot-rolled low-carbon high strengthcomplex phase steel, Materials Science Forum. 788 (2014) 267-271. (EI)
[3] 刘自权,谭小东,杨小龙,许云波,吴迪,王国栋,新型热轧低碳TRIP钢的轧制工艺与疲劳性能,1(2014) 54-58.(国内核心)
中厚板:
[1] X.L. Yang, Y.B. Xu, X.D. Tan, D. Wu, Relationships among crystallographictexture, fracture behavior and Charpy impact toughness in API X100 pipelinesteel, Mater. Sci. Eng. A. 656 (2015) 96-106. (SCI)
[2] X.L. Yang, X.D.Tan, Y.B. Xu, Z.P. Hu, Y.M. Yu, D. Wu, Effect of rolling process onimpact toughness in high strength low carbon bainitic steel, Mater. Sci. Forum.816 (2015), 816:743-749. (EI)
[3] X.L. Yang, Y.B. Xu, X.D. Tan, Z.P. Hu, Y.M. Yu, D. Wu, Microstructures andmechanical properties of high strength low carbon bainitic steel,Mater. Sci. Forum. 817 (2015) 257-262. (EI)
[4] X.L. Yang, Y.B. Xu, X.D. Tan,D. Wu, Influences of crystallography and delamination on anisotropy of Charpyimpact toughness in API X100 pipeline steel, Mater. Sci. Eng. A. 607 (2014)53-62. (SCI)
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