个人简介
简介:74年5月生,2004年2月开始在北京科技大学材料学院任教,现任钢铁协同创新中心海洋工程用钢团队副教授,博导。
教育背景:1991.9-1995.6,中南工业大学材料科学与工程系本科;1995.9-1997.9,清华大学材料科学与工程系硕士;1997.10-2001.3,(日本)茨城大学材料科学系博士;2001.4-2003.7,(加拿大)McMaster大学材料系博士后获奖:2009年获第六届北科大青年教师基本功比赛一等奖;2012年获评北科大优秀班主任;2014年获评北科大第十五届“我爱我师----我心目中最优秀的老师”专业课老师。
研究领域
金属材料中的相变;高性能钢铁材料的组织与性能调控;金属材料中的界面;钢铁材料的焊接性能
科研项目
1、低碳钢中晶界铁素体的生长模式及界面类型对贝氏体形核的影响,国家自然科学基金,课题负责人。
2、低温厚壁X80(K65)埋弧焊管及热煨弯管的低温韧性及焊接性能的研究,中信金属有限公司,课题负责人。
3、Φ1422大口径厚壁X80管线钢板及UOE焊管开发,中信金属有限公司,课题负责人。
4、新一代高钢级含铌管线钢及钢管的焊接性和应用技术,中信金属有限公司,课题负责人。
5、高性能膨胀套管产业化技术开发,国家科技支撑项目,参加。
6、高性能耐磨钢开发,“863”计划,参加。
7、第三代高强高韧低合金钢精细组织的研究,“973”计划,参加。
近期论文
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代表性学术论文
1) Liu S, Tan H, Guo H, et al. The Determining Role of Aluminum on Copper Precipitation and Mechanical Properties in Cu-Ni-bearing Low Alloy Steel[J]. Materials Science & Engineering A, 2016, 676:510-521.
2) Shilong Liu, Xiucheng Li, Hui Guo, Chengjia Shang, R.D.K. Misra. Isolating contribution of individual phases during deformation of high strength–high toughness multi-phase pipeline steel. Materials Science and Engineering: A, Volume 639, 15 July 2015, Pages 131-135
3) W.H. Zhou, V.S.A. Challa, H. Guo, C.J. Shang, R.D.K. Misra. Structure–mechanical property relationship in a low carbon Nb–Cu microalloyed steel processed through a three-step heat treatment: The effect of tempering process. Materials Science and Engineering: A, Volume 620, 3 January 2015, Pages 454-462
4) Z.J. Xie, Y.P. Fang, G. Han, H. Guo, R.D.K. Misra, C.J. Shang. Structure-property relationship in a 960 MPa grade ultrahigh strength low carbon niobium-vanadium microalloyed steel: The significance of high frequency induction tempering, Materials Science and Engineering: A, Volume 618, 17 November 2014, Pages 112-117
5) W.H. Zhou, X.L. Wang, P.K.C. Venkatsurya, H. Guo, C.J. Shang, R.D.K. Misra. Structure–mechanical property relationship in a high strength low carbon alloy steel processed by two-step intercritical annealing and intercritical tempering. Materials Science and Engineering: A, Volume 607, 23 June 2014, Pages 569-577
6) W Zhou,Z Xie,H Guo,C Shang. REGULATION OF MULTI-PHASE MICROSTRUCTURE AND MECHANICAL PROPERTIES IN A 700 MPa GRADE LOW CARBON LOW ALLOY STEEL WITH GOOD DUCTILITY. Acta Metallurgica Sinica, 2015, 72(3):407-416
7) Zhou, WH ; Guo, H ; Xie, ZJ; Shang, CJ; Misra, RDK. Copper precipitation and its impact on mechanical properties in a low carbon microalloyed steel processed by a three-step heat treatment : MATERIALS & DESIGN (2014.11), 63: 42-49
8) Zhou, WH ; Guo, H; Xie, ZJ; Wang, XM ; Shang, CJ. High strength low-carbon alloyed steel with good ductility by combining the retained austenite and nano-sized precipitates. MATERIALS SCIENCE AND ENGINEERING A (2013.12), 587: 365-371
9) Guo, H; Cheng, JJ; Yang, SW; He, XL . Influence of combined Cu and Nb addition on the quenched microstructure and precipitation during tempering in ultra-low carbon steels. Journal of Alloys and Compounds (2013.11), 577: S619-S625
10) Wenhao Zhou, Hui Guo and Chengjia Shang. Advanced Materials Research Vols. 535-537 (2012) pp 601-604: Effect of tempering temperature on the microstructure and mechanical properties of a 0.1C steel with high strength and low yield ratio
11) Yin Bai, Hui Guo, Shanwu Yang and Xinlai He. Advanced Materials Research Vols. 535-537 (2012) pp 605-610: Influence of austenite grain size on the crystallography of allotriomorphic ferrite in a low carbon steel
12) H. Guo, X. Gao, Y. Bai, M. Enomoto, S.W. Yang, X.L. He, Mater. Charact. 67, 34 (2012): Variant selection of bainite on the surface of allotriomorphic ferrite in a low carbon steel(2012年1月)
13) 王西霞,郭晖,王鼎,白银,杨善武,贺信莱。金属学报,48(2012):385-392:Fe-C-Mn-Si钢中奥氏体共格孪晶界对贝氏体铁素体变体选择的影响(2012年4月)
14) Hui Guo, Xiaoran Sun, Shanwu Yang, Xuemin Wang and Chengjia Shang. Advanced Materials Research Vols. 430-432 (2012) pp 453-457: A study on Cu and Nb precipitation during high temperature tempering in low carbon steels(2012年1月)
15)Xie, Z. J., Yuan, S. F., Zhou, W. H., Yang, J. R., Guo, H., & Shang, C. J. (2014). Stabilization of retained austenite by the two-step intercritical heat treatment and its effect on the toughness of a low alloyed steel.Materials & Design, 59(7), 193-198.
16)Guo H, Gao X, Bai Y, et al. Variant selection of bainite on the surface of allotriomorphic ferrite in a low carbon steel[J]. Materials Characterization, 2012, 67(3):34-40.