合肥大學先進制造工程學院碩士研究生校內導師簡介 姓名 | 鐘華 | 性別 | 男 |
| 學歷 | 研究生 | 學位 | 博士 | 院系 | 先進制造工程學院 | 專業技術職務 及專家稱謂 | 副教授 | 郵箱 | hzhong@hfuu.edu.cn | 主要研究領域 及方向 | 1、高端裝備制造及延壽; 2、高性能新型鈦合金; 3、激光增材制造。 | 個人 簡歷 | 2012.09~2015.01 燕山大學亞穩材料制備技術與科學全國重點實驗室 碩士 2015.09~2018.06 燕山大學亞穩材料制備技術與科學全國重點實驗室 博士 2018.07至今 合肥大學 先進制造工程學院 講師、副教授 | 近五年主要 科研項目 | 2020.01~2022.12 高端軸承摩擦學技術與應用國家地方聯合工程實驗室開放課題,主持; 2020.07~2022.06 安徽省自然科學基金(青年項目),主持; 2021.01~2023.12 安徽省高校自然科學研究項目,主持; 2023.09~2026.08 安徽省自然科學基金(面上項目),主持; 2023.09-2025.08 安徽高校自然科學研究項目(重點項目),主持。 | 主要成果 (論文、著作、專利等) | 期刊論文(僅列出第一作者/通訊作者論文) Tribological behaviors of Zr-based bulk metallic glass versus Zr-based bulk metallic glass under relative heavy loads, Intermetallics, 2015.10, 65: 88~93; (SCI) Effect of counterpart material on the tribological properties of Zr-based bulk metallic glass under relatively heavy loads, Wear, 2016, 346: 22~28; (SCI) Tribological properties of plasma nitrided AISI 4340 steel in vacuum. Materials Science & Technology, 2016, 32(4): 275-281; (SCI) Friction and wear behavior of annealed Ti-20Zr-6.5Al-4V alloy sliding against 440C steel in vacuum, Tribology International, 2017, 109: 571~577; (SCI) Vacuum Tribological Properties of Ti-20Zr-6.5Al-4V Alloy as Influenced by Sliding Velocities, Metallurgical and Materials Transactions A, 2017, 48A(11): 5678~5687; (SCI) Investigation on the Unlubricated Sliding Tribological Properties of Ti-20Zr-6.5Al-4V Alloy at Elevated Temperatures, Metals and Materials International, 2020, 26: 1766-1778; (SCI) Tribological performance and dry sliding-induced microstructure evolution in T20Z alloy under different atmospheric conditions, Surface Topography- Metrology and Properties, 2020, 8(2), 025010; (SCI) Friction and wear behaviour of AISI 5140 steel under rectangular wave loading conditions. Tribology- Material, Surface & Technology, 2015, 9 (2), 92-98; (SCI) Comparative Study on Tribological Behaviors of Two TiZr-Based Alloys in Vacuum, Journal of Materials Engineering and Performance, 2022. (SCI) Preparation of oxide coating on Ti30Zr5Al3V alloy via plasma electrolytic oxidation and its tribological behavior, Surface and Coatings Technology, 2023. (SCI) Fabrication and enhanced tribological properties of thermal-oxidated coating on a novel TiZr-based alloy, Surface and Coatings Technology, 2025. (SCI) Zr content effect on microstructure and tribological properties of thermal oxidated coating on TiZrAlV alloys, Transactions of Nonferrous Metals Society of China, 2025. (SCI) High-Temperature Oxidation, Corrosion, and Wear Resistance of Cr-xAl Laser Coated on Metal Zr Surface, Journal of Materials Engineering and Performance, 2024. (SCI) Understanding electric current effects on tribological behaviors of instantaneous current-carrying pair with recurrence plot, Journal of Tribology, 2025. (SCI)
授權發明專利(僅列出第一發明人專利) 一種高溫誘導鈦鋯基合金表面耐磨擴散層的制備方法; 一種高溫誘導鈦鋯基合金表面耐蝕氧化層的制備方法; 一種鈦鋯基合金表面處理工藝及噴丸強化裝置; 一種提高鈦鋯基合金耐磨性的表面強化方法; 一種鈦合金管道焊接設備。
| 獲獎 情況 | 2024年,安徽省教學成果一等獎,排名第五。 |
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