| 周亚举 讲师 学位:工学博士 职称:讲师 硕士生导师 毕业院校:华中科技大学 办公地点:西三楼211 联系方式:zhouyaju@zzuli.edu.cn |
个人简介
主要从事粉芯丝材设计、增材制造、界面调控、摩擦磨损与表面技术、离子辐照等研究工作,迄今以第一/通讯作者在国际知名期刊J. Mater. Res. Tech.、Mater.Character、J. Nucl. Mater.、J. Alloys Compd.、Chem. Eng. J.等发表论文10余篇,中文《焊接学报》论文1篇,授权发明专利3项。主持中国博士后科学基金面上项目1项、河南省博士后科学基金面上匹配资助项目1项,博士科研启动项目1项、青年培育基金项目1项,参与国家科技部重点研发项目1项、国家自然科学基金面上和青年项目2项、河南省“揭榜挂帅”项目1项。2025年入选河南省科技副总项目(省级科技人才项目),《金属加工(热加工)》期刊青年编委。 |
研究方向
金属材料增材制造与界面调控 摩擦磨损与表面技术 先进材料制备及成形技术 |
教育背景
2020.09-2024.06,华中科技大学,材料科学与工程,工学博士 |
开设课程
《工程力学》、《工程材料及热处理》 |
科研项目
[1] 中国博士后科学基金面上项目:增材制造ODS 钢纳米稀土复合氧化物析出与调控机制(2025M770230),2025-2026, 主持
[2] 中国博士后科学基金面上资助-河南省匹配资助:增材制造ODS 钢纳米稀土复合氧化物析出与调控机制,2025-2026, 主持
[3] 河南省“揭榜挂帅”项目:***关键制造技术,2025-2026,396万,参与(第三)
[4] 国家科技部重点研发项目:聚变用ODS低活化钢及热沉铜的高效制备和性能优化-子课题(2018YFE0306104),2019-2023, 864万,参与
[5] 国家自然科学基金面上项目:基于气-固两相反应体系的三维石墨烯载Zr-MOF@贵金属复合光催化材料宏观体的构筑及选择性光催化还原CO2性能与机理研究(2207081006),2020-2024,64万,参与
论文专著与专利
代表性论文:
[1]Yaju Zhou*, Weiwei Zhang, Shizhong Wei*, et al., Irradiation-induced refinement of nano-oxides and the role in suppressing swelling in He-implanted ODS reduced-activation ferritic steels, Materials Characterization, 2026, 232: 115990 (IF 5.5, 中科院2区);
[2]Yaju Zhou*, Jingyi Zhou, Shizhong Wei*, et al.Improvement the thermal stability and mechanical properties of ODS Cu alloy by forming composite oxide dispersion, Materials Characterization 229 (2025) 115552 (IF 5.5, 中科院2区);
[3]Yaju Zhou*, Shengming Yin*, Shizhong Wei, et al. The synchronous improvement of thermal stability, mechanical properties, thermal conductivity of oxide dispersion strengthened Cu-Cr alloy by microalloying Si, Journal of Materials Research and Technology 34 (2025) 2161-2173 (IF 6.2, 中科院2区);
[4] Yaju Zhou, Shengming Yin*, Youwei Yan, et al. Preliminary study on the microstructure and hardness of wire and arc additively manufactured ODS-RAFM steel subjected to 2.5 MeV Fe ion irradiation, Nuclear Materials and Energy 36 (2023) 101490 (IF=2.6, 中科院2区);
[5] Yaju Zhou, Shengming Yin*, Youwei Yan, et al. The microstructure, mechanical-thermal properties and softening resistance of Y4Al2O9 dispersion-strengthened Cu alloy, Journal of Nuclear Materials 560 (2022) 153484 (IF 3.555, 中科院1区,Top期刊);
[6] Yaju Zhou, Shengming Yin*, Yong Jiang∗, et al. Wire and arc additive manufacturing fabrication of ODS-RAFM steels and preliminary evaluation on microstructures and mechanical properties, Journal of Nuclear Materials 572 (2022) 154068 (IF 3.555, 中科院1区,Top期刊);
[7] Yaju Zhou, Shengming Yin*, Youwei Yan, et al. Improving high temperature properties of Cu-Cr-Y alloy by residual Cr particles and nano-Y2O3 dispersion, Journal of Materials Research and Technology 21 (2022) 2976-2988 (IF 6.267, 中科院1区,Top期刊);
[8] Yaju Zhou, Shengming Yin*, Youwei Yan, et al. Wire and arc additive manufacturing of inner-channel structured RAFM: Effect of microalloying Ti on microstructure and mechanical properties, Fusion engineering ang design (2022) 113296 (IF 1.905, 中科院3区);
[9] Yaju Zhou, Pengwei Huo*, etc. Construction of high-performance electrode materials of NiCo2O4 nanoparticles encapsulated in ultrathin N-doped carbon nanosheets for supercapacitors, Dalton Transaction 50 (2021) 1097 (IF 4.569, 中科院2区);
[10] Yaju Zhou, Pengwei Huo*, Shouqi Yuan*, et al. MOF-derived Co3O4-C/Ni2P2O7 electrode material for high performance supercapacitors, Chemical Engineering Journal, 378 (2019) 122242 (IF=10.652, 中科院1区,Top期刊);
[11] Yaju Zhou, Pengwei Huo et al., Chemical precipitation synthesis of porous Ni2P2O7 nanowires for supercapacitor, Journal of Alloys and Compounds, 790 (2019) 36-41 (IF=4.65, 中科院1区, Top期刊);
[12] Yaju Zhou, Pengwei Huo* et al., Preparation of 3D porous g-C3N4@V2O5 composite electrode via simple calcination and chemical precipitation for supercapacitors, Journal of Alloys and Compounds, (2019) 152707 (IF=4.65, 中科院1区, Top期刊);
[13] Yaju Zhou, Pengwei Huo* et al., Construction of 3D porous g-C3N4/AgBr/rGO composite for excellent visible light photocatalytic activity, Applied Surface Science, 458 (2018) 586-596 (IF=5.155, 中科院1区,Top期刊);
[14] 周亚举,尹圣铭,严有为等,热处理对电弧熔丝增材制造核电用铁素体/马氏体钢显微组织及力学性能的影响,焊接学报,(2023)4(10):18-26(EI,核心期刊);
代表性专利:
[1]国家发明专利,一种高导高强高韧性细晶Cu-W-Y合金及其制备方法和应用,CN120666215A,2025,第一;
[2] 美国专利,Preparation method of nano-oxide dispersion strengthened steel, 2023-2-28, US Patent 11590613,第四;
[3] 国家发明专利,纳米氧化物和碳化物弥散强化低活化钢及制备方法和应用,ZL202110484622.6,2022,第二;
[4] 国家发明专利,一种纳米氧化物弥散强化钢的制备方法,ZL202210052384.6,2022,第二;
[5] 国家发明专利,MOF衍生的复合电极材料及制备方法和应用,ZL201910448976.8,2021,第一;
[6] 国家发明专利,一种三维多孔复合光催化剂的制备方法及应用申请号: ZL201810231203.X,2020,第一。荣誉获奖
[1] 第三届中国特种装备创新设计大赛,河南省二等奖,2024,指导教师 [2] 中国大学生机械工程创新创意大赛,国家三等奖,2025,指导教师 [3] 中国高校智能机器人创意大赛,国家三等奖,2025,指导教师 |


