办公地点:冶金楼509
本科课程: 金属材料及热处理(全英文)
研究生课程 :钢铁材料固态相变与表征(双语)
科研领域:先进钢铁(金属)材料物理冶金研究
(1) 钢铁材料固态相变、组织性能调控
(2) 先进高强韧钢设计、开发
(3) 航空发动机用变形高温合金开发
社会兼职:
担任《Materials》编委
担任《J. Iron Steel Res. Int.》、《Int. J. Miner. Metall. Mater.》青年编委
担任《工程科学学报》、《钢铁研究学报》、《中国冶金》、《钢铁钒钛》、《轧钢》青年编委
担任中国金属学会轧钢分会委员、热轧领域专家
简历:
2018-至今,巨乳a片 ,副教授,教授
2024.1-2024.2,日本东北大学,访学教授
2016-2018,日本东北大学,Research Associate
2014-2016,日本东北大学,博士后
2011-2014,日本北海道大学,博士
主要学术成就:
主要从事先进钢铁材料 / 高温合金 / 特种合金 设计开发、固态相变/轧制与热处理基础理论研究,在相变(析出)机制、组织性能调控与表征领域具有扎实研究基础,重点围绕汽车、航空航天、低空经济、国防、工程机械、新能源、建筑等领域用超高强韧钢、耐磨钢、高温合金等领域展开材料研发与基础理论研究。近年来,针对高强钢、新型高温合金制备关键技术,深入研究了相变晶体学、热/动力学、合金元素配分、界面、形核等基础科学问题,取得了一系列原创性成果。开发了化学异质、逆相变冶金、非共格界面热塑性调控等新技术,基于此开发了系列新型高强塑钢 / 合金,在工业界获得推广应用,为企业创造了良好经济效益。
发表论文约50余篇,其中20余篇发表在Acta Materialia、Scripta Materialia等国际顶级期刊。主持和参与了多项国家省部级重大课题,包括国家自然科学基金、北京市自然科学基金、日本新能源产业技术开发机构(NEDO)、日本科学技术振兴机构(JST)、日本JFE钢铁公司、日本神户制钢、中国宝钢股份、首钢、攀钢、湖南钢铁、河钢等国内外课题。目前担任Nature Communications., Acta Materialia, Script Materialia等知名期刊审稿人与国内多家知名期刊青年编委。
代表性论著:
[1] J. Yan, X. Zhang*, H. Liu, G. Miyamoto, Z. Cao, Y. Zhang, Y. Pei, P. Shi, J. Chen, T. Furuhara. Enhancing ductility of the TRIP aided bainitic ferrite steel by Mn heterogeneity introduced via reversion: Towards the 3rd generation. Scripta Materialia , Vol. 252, 116241 (2024). (IF: 5.3, SCI, TOP)
[2] X. Zhang*, G. Miyamoto, Y. Toji, Y. Zhang, T. Furuhara. “Role of cementite and retained austenite on austenite reversion from martensite and bainite in Fe-2Mn-1.5Si-0.3C alloy”. Acta Materialia, 209(2021), 116772. (IF: 9.4, SCI/一区, TOP)
[3] X. Zhang*, G. Miyamoto, Y. Toji, S. Nambu, T. Koseki, T. Furuhara. “Orientation of austenite reverted from martensite in Fe-2Mn-1.5Si-0.3C alloy”. Acta Materialia, Vol. 144, pp. 601-612 (2018), (IF: 9.4, SCI/一区,TOP 5%论文)
[4] X. Zhang*, G. Miyamoto, T. Kaneshita, Y. Yoshida,Y. Toji, T. Furuhara. “Growth mode of austenite during reversion from martensite in Fe-2Mn-1.5Si-0.3C alloy: a transition in kinetics and morphology”. Acta Materialia, Vol. 154, pp. 1-13 (2018). (IF: 9.4, SCI/一区,TOP 10%论文)
[5] P. Shi, Y.J. Ren, X.G. Zhang*, H.Wang, J.J. Chen, Y.W. Pei, J.H. Yan, H.B. Zheng, J. Zhang, "Role of martensite morphology on mechanical response of dual-phase steel produced by partial reversion from martensite". Materials Science and Engineering: A, 893(2024),146116. (IF: 6.4, SCI/一区, TOP)
[6] X.G. Zhang*, Y.J. Ren, J. Zhang, X.D. Yang, X. Xie, H. Liu, W.C. Yang. “Effects of prior austenite grain size on reversion kinetics of different crystallographic austenite in a low carbon steel”. Materials Characterization, 190(2022), 112025. (IF: 4.7, SCI,SCI/一区, TOP)
[7] X.G. Zhang*, W.C. Yang, J.H. Yan, Y. Zhou, D.P. Xiao, L. Shui, J.H. Fu, F. Sun, P. Shi, J.J. Chen, Y.W. Pei, J. Zhang, A new model for predicting homogenization kinetics of a typical wrought superalloy, Trans. Nonferrous Met. Soc. China, Vol. 34, 1178-1190 (2024). (IF: 4.5, SCI/一区, TOP)
[8] X.G. Zhang*, J.J. Chen, Y. Zhou, L. Shui, D.P. Xiao, J.H. Fu, W.C. Yang, H. Liu, Y.J. Ren, P. Shi, J. Zhang, Oxidation and internal nitridation behaviours of a Ni-based superalloy Rene 65 during high-temperature homogenization, J. Iron Steel Res. Int. 30 (2023) 1622-1632. (IF: 2.5, SCI/二区, TOP)
[9] X. Zhang*, H. Liu, Y. Ren, W. Yang, J. Chen, P. Shi, G. Miyamoto, T. Furuhara. A Novel Way Refining the Partially Reverted Globular Austenite in Reversion from Martensite. ISIJ International. Vol. 63, 737-745 (2023). (IF: 1.926, SCI,TOP)
[10] X. Zhang*, Y. Pei, Y. Zhou, J. Chen, D. Xiao, P. Tang, J. Fu, J. Yan, J. Zhang. Hot-Deformation Behavior and Dynamic Recrystallization Rules of Hot-Rolled GH4141 Superalloy. Rare Metal Materials and Engineering , Vol. 54, 505-516 (2025). (IF: 0.908, SCI)
[11] X. Zhang*, J. Chen, W. Yang, H. Liu, Y. Ren, P. Shi. Oxidation and internal nitridation behaviors of a Ni-based superalloy Rene 65 during high-temperature homogenization. Journal of Iron and Steel Research International . Vol. 30, 1622-1632 (2023). (IF: 1.619, SCI,TOP)
[12] 张献光*, 裴逸武, 周扬, 等. 热轧GH4141高温合金热变形行为及动态再结晶规律[J]. 稀有金属材料与工程, 2025, 54(02): 505-516.
[13] 张献光*,刘欢,张健,王洪利,任英杰,杨文超,陈佳俊,石鹏. 基于渗碳体调控低合金钢中块状逆变奥氏体与奥氏体晶粒尺寸. 工程科学学报,Vol 45(6):1−12,2023.
[14] T. Furuhara, X. Zhang, T. Chiba, M. Sato, G. Miyamoto. Metallurgy of reversion treatment in steels. Journal of The Japan Society for Heat Treatment, Vol. 57, pp.327-333 (2017). (综述文章) .
[15] 张献光*,宫本吾郎,古原忠. 加热速率对逆转变奥氏体微观组织的影响. 钢铁,Vol. 54(2),pp.83-89(2019).