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苑振涛
发布日期:2026年04月13日 浏览次数:

苑振涛,教授,硕士生导师

电子邮箱:zhentao_y@kust.edu.cn

办公地址:新迎校区碧丰楼203


研究方向:

(1) 稀贵金属材料设计与应用

(2) 材料表面改性与应用

(3) 焊接材料及工艺设

教育经历:

(1) 2012-09 至 2018-12, 昆明理工大学, 材料加工工程, 博士

(2) 2007-09 至 2010-05, 昆明理工大学, 材料加工工程, 硕士

(3) 2003-09 至 2007-07, 河南科技大学, 材料成型及控制工程, 学士

工作经历:

(1) 2025-11 至 今, 昆明理工大学, 城市学院, 教授

(2) 2020-10 至 2025-11, 昆明理工大学, 城市学院, 副教授

(3) 2014-07 至 2020-10, 昆明理工大学, 城市学院, 讲师

科研项目:

(1)国家自然科学基金委员会, 地区科学基金项目, 52263034 化学气相沉积Ta/Re层状复合材料的界面结构演变及其强韧化机制研究 2023-01-01 至 2026-12-31, 主持

(2)国家自然科学基金委员会, 地区科学基金项目合作项目, 52061019, 化学气相沉积钽涂层表面膜层生长动力学机制及耐蚀性能研究, 2021-01-01 至 2024-12-31, 主持,

(3)云南省科技厅, 重点研发计划, 202203AM140010, 2022年“智汇云南”计划-青年科学家、青年企业家, 2022-06 至 2024-05, 主持

(4)云南贵金属实验室, 重点研发计划-子课题, YPML-2023050213, 增材制造用贵金属球形粉末制备关键技术及新产品开发, 2023-05 至 2025-04,主持

(5)云南省科技厅, 基础研究专项-重点项目合作项目, 202001AT070147,“CVDTa涂层表面活性调控及耐蚀机理研究, 2020-06 至 2024-05, 主持

(6)云南省科技厅, 基础研究专项-面上项目, 202001AT070147, CVD Ta/Re层状结构材料界面复合效应及其强韧化机制研究, 2021-06 至 2024-05, 主持

(7)昆明市政府,“春城计划“高层人才培养配套项目,2023.10-2028.9,主持

目前发表SCI收录论文80余篇,其中在Journal of Alloys and Compounds, Journal of Power Sources, Ceramics International等期刊上发表70余篇。

【近期发表的部分论文】

[1] Yuan Z*. Acid-Free Cu (I) activator for Selective pyrrhotite Flotation: Interfacial activation pathway and mechanistic insights[J]. Minerals Engineering, 2026, 239: 110113.

[2] Yuan Z*. Prediction and Analysis of Crystal Structure, Mechanical Properties, High-temperature Performance, and Electronic Characteristics of Re-Tax (x= 0.00 at%, 1.85 at%, 3.70 at%, and 5.55 at%) Solid-solutions: First-principles Calculations[J]. Journal of Alloys and Compounds, 2025: 184572.

[3] Yuan Z*. Mechanisms of Molybdenum Doping for Enhancing Fluoride-Induced Pitting Corrosion Resistance in Titanium Alloys for PEMFC Bipolar Plates[J]. Journal of Materials Engineering and Performance, 2025: 1-14.

[4] Yuan Z*. Corrosion resistance and electrical conductivity of Ta-modified Titanium bipolar plates for PEMFC[J]. Corrosion Engineering, Science and Technology, 2025: 1478422X241307512.

[5] Yuan Z*. Microstructural Characterization and Electrochemical Corrosion Behavior of TiOx Coatings Prepared by Anodization and Magnetron Sputtering[J]. Materials and Corrosion, 2025.

[6] Yuan Z*. Interpretable machine learning models for predicting corrosion behaviour in Titanium alloys[J]. Corrosion Engineering, Science and Technology, 2025: 1478422X251358463.

[7] Yuan Z*, et al. Physical and chemical properties analysis of precipitated phases in Zr reinforced Au based electrical contact materials: A first principles calculations[J]. Materials Today Communications, 2025, 42: 111461.

[8] Yuan Z*. First-Principles Calculations of Mechanical and Thermodynamic Properties of ReTa3 as a Transition Layer in Ta-Re-Layered Composites[J]. Journal of Materials Engineering and Performance, 2025: 1-10.

[9] Yuan Z. Enhanced conductivity behavior of titanium-based bipolar plate oxide films through microalloying: First-principles calculations and experimental investigations[J]. Ceramics International, 2024, 50(2): 4101-4108.

[10] Yuan Z*, et al. Investigation of the evolution and corrosion resistance mechanism of anodized film on Ta surface[J]. Ceramics International, 2024, 50(20): 40151-40160.

[11] Yuan Z. Improvement of Mechanical Properties of β-AlSiFe Phase by Doping Transition Metals (M= Cr, Mn, V, Ti, and Zr): A First-Principles Study[J]. Journal of Materials Engineering and Performance, 2024: 1-8.

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