教育经历: (1) 2019-09 至 2024-01, 天津大学, 材料加工工程, 博士 (2) 2016-09 至 2019-07, 天津大学, 材料加工工程, 硕士 (3) 2012-09 至 2016-07, 中国矿业大学, 材料成型及控制工程, 学士 工作经历: (1) 2024-04 至 今, 昆明理工大学, 材料科学与工程学院, 特聘副教授 科研项目: (1) 国家自然科学基金委员会, 青年科学基金项目(C类),52605541,2027-01 至 2029-12,主持 (2) 云南省基础研究计划面上项目,202601CF070054,2026-06至 2029-05,主持 (3) 云南省“兴滇英才支持计划”青年人才专项,2026-01 至 2030-12, 主持 (4) 云南省科技厅-昆明理工大学“双一流”创建联合专项面上项目,202401BE070001-030,2024-12至2027-11,主持 (5) 全国重点实验室开放基金,YSQH-ZYTS-24007,2024-12至 2026-11,主持 (6) 昆明理工大学高层次人才平台建设项目,2024-04至2032-04,主持 (7) 云南省重大科技专项计划项目,202602AB080016,2026-01至2028-12,参研 (8) 云南省科技人才与平台计划(院士专家工作站)项目,202605AF350021,2026-01至2028-12,参研 学术成果:【论文与专利】 目前以第一作者/通讯作者在Additive Manufacturing、Journal of Materials Processing Technology、Materials Science and Engineering: A 等金属材料与成形制造领域权威期刊发表SCI/EI收录论文20余篇,其中JCR Q1论文16篇,授权/受理国家发明专利8项。 【近期发表的部分论文】 [1]S. Ge, Z. Liu, X. Zhao, Y. Zhao, Y. Shi, Z. He, X. Li, K. Lu, L. Li, W. Tang*, Z. Zhan*. Characteristics and corrosion behavior of La2O3 / silane / Al2O3 films on Al-Zn-Mg-Cu/TiB2 composite materials[J]. Surface & Coatings Technology, 2026, 527: 1-11. [2]L. Shi1, W. Tang1, Z. Yuan, L. Li, X. Wang*, Z. Zhan*. Ionic size mismatch and Jahn–Teller effects govern lattice distortion and anisotropy in medium/high-entropy spinel oxides[J]. Materials Science and Engineering: A, 2026, 973: 150736. [3]Q. Jia, Y. Zhao, Y. Shi, Z. He, X. Zhao, X. Li, K. Lu, L. Li, W. Tang*, Z. Zhan*. Effect of TiB2 on the wear resistance of cast Al-Zn-Mg-Cu alloys[J]. Results in Engineering, 2026, 30: 110964. [4]B. Pang, Z. He, Z. Liu, X. Zhao, K. Lu, Y. Zhao, X. Li, Y. Shi, L. Li, Z. Zhan*, W. Tang*. Thermal deformation behavior and microstructural evolution of AlZnMgCu/TiB2 alloy[J]. Journal of Alloys and Compounds, 2025, 1042: 184138. [5]B. Du*, M. He, W. Tang*, X. Yang, J. Yi, S. Wang*. Heterogeneity of interfacial microstructure and fracture behavior of friction plug welds for 2219-T87 Al–Cu alloy[J]. Materials Characterization, 2025, 222: 114864. [6]G. Wang, X. Zhan, W. He, Z. Yuan, L. Li, X. Wang*, W. Tang*, Z. Zhan*. Synergistic mechanism of oxygen-deficient and Co-doped homojunction anatase/rutile TiO2 anodes for LiBs conductivity/Li+ transport enhancement[J]. Applied Surface Science, 2025, 709: 163808. [7]G. Wang, W. He, Z. Yuan, L. Li, X. Wang*, W. Tang*, Z. Zhan*. Interfacial nanosized and oxygen vacancy engineered homojunction anatase/rutile-TiO2 core-shell microspheres for synchronous high-capacity and ultrafast lithium storage[J]. Ceramics International, 2025, 51(18): 25399-25407. [8]J. Wang, Z. He, X. Li, K. Lu, X. Wang, L. Li, Z. Yuan, Z. Zhan*, W. Tang*. Corrosion behavior of AlZnMgCu/TiB2 composites prepared via the in-situ generation of TiB2[J]. Journal of Materials Research and Technology, 2025, 36: 1017-1027. [9]Q. Li, L. Shi, Y. Cai, X. Wang, L. Li, Z. Yuan*, W. Tang*, Z. Zhan*. Effect of graphite on microstructure and friction-wear properties of yttria-stabilized zirconia coatings[J]. Ceramics International, 2024, 50(24): 54116-54124. [10]W. Tang, X. Yang*, T. Luo, R. Wang, C. Gu. Precipitation behavior and strengthening-toughening mechanism of additive friction stir-deposited Al–Mg–Si–Cu alloy[J]. Additive Manufacturing, 2023, 76: 103785. [11]W. Tang, X. Yang*, R. Wang, T. Luo. Tailoring microstructure of additive friction stir-deposited Al–Mg alloy through post-processing deformation treatment for enhancing mechanical performance[J]. Materials Science and Engineering: A, 2023, 885: 145632. [12]W. Tang, X. Yang*, C. Tian, Y. Xu. Interfacial grain structure, texture and tensile behavior of multilayer deformation-based additively manufactured Al 6061 alloy[J]. Materials Characterization, 2023, 196: 112646. [13]W. Tang, X. Yang*, C. Tian. Influence of rotation speed on interfacial bonding mechanism and mechanical performance of aluminum 6061 fabricated by multilayer friction-based additive manufacturing[J]. International Journal of Advanced Manufacturing Technology, 2023, 126(9-10): 4119-4133. [14]W. Tang, X. Yang*, C. Tian, C. Gu. Effect of rotation speed on microstructure and mechanical anisotropy of Al-5083 alloy builds fabricated by friction extrusion additive manufacturing[J]. Materials Science and Engineering: A, 2022, 860: 144237. [15]W. Tang, X. Yang*, C. Tian, Y. Xu. Microstructural heterogeneity and bonding strength of planar interface formed in additive manufacturing of Al−Mg−Si alloy based on friction and extrusion[J]. International Journal of Minerals, Metallurgy and Materials, 2022, 29(9): 1755-1769. 奖励与荣誉: [1]. 2024,入选云南省“兴滇英才支持计划”青年人才 [2]. 2025,国家级大学生创新创业训练计划重点支持领域项目指导教师 [3]. 2026,中国大学生机械工程创新创意大赛塑性工程实践与创新赛全国三等奖指导教师 [4]. 2026,中国国际大学生创新大赛校级银奖指导教师 欢迎材料、机械、控制、计算机、冶金等相关专业背景的优秀学生加入团队! |