研究情况 |
主持参与科研项目20余项,代表性课题: 1. 国家自然科学基金联合基金重点项目子课题,94.5万,2022-2025,主持 2. 国家自然科学基金青年科学基金(C类),30万,2026-2028,主持 3. 山东省自然科学基金青年科学基金(C类),13万,2025-2028,主持 4. 山东省自然科学基金青年项目,15万,2023-2025,执行 5. 青岛市自然科学基金青年项目,10万,2023-2025,主持 6. 粉末冶金国家重点实验室开放课题,3万,2024,主持 7. 山东科技大学“菁英计划”人才科研支持计划,10万,2019-2023,主持 8. 国家自然科学基金重点项目,230万,2024-2028,主要参与人 9. 国家“863”计划项目课题,450万,2015-2018,主要参与人 10. 山东省重大科技创新工程项目,500万,2019-2021,主要参与人 |
论文、论著 |
发表学术论文70余篇,第一作者或通讯作者发表SCI论文18篇,参编学术著作2部,参编教材3部。代表性论著: [1] Zhou Dazhou, Jiang Di, Song Xiaojie* et al. Corrosion and wear behaviors of (CoCrNi)87M8B4C (M: V/Nb) high-entropy alloy coatings by laser cladding Journal of Materials Science & Technology, 2026, 251, 161-179. [2] Ji Yupeng, Zhou Dazhou, Jiang Di, Song Xiaojie* et al. Wear and wear-corrosion performance of CoCrNi-based high-entropy alloys modified by Mo and C under ultrasonic-assisted laser cladding, Surface and Coatings Technology, 2025, 513, 132446 [3] Jiang Di, Cui Hongzhi, Song Xiaojie* et al. Wear and corrosion properties of B4C-added CoCrNiMo high-entropy alloy coatings with in-situ coherent ceramic, Materials & Design, 2021, 210: 110068 [4] Jiang D, Cui Hongzhi, Song Xiaojie* et al. Synergistic improvement of wear and corrosion resistance of CoCrNiMoCB coatings obtained by laser cladding Role of Mo concentration, Materials & Design, 2022, 219: 110751 [5] Liu Minglei, Song Xiaojie* et al. Wear and corrosion resistance of TiAlSi-Nix (x = 0, 5, 11, 17, 23 at%) multi-principal component alloy coating prepared by ∞ oscillating laser cladding, Journal of Alloys and Compounds, 2024, 1003:157677 [6] Song Xiaojie, Cui Hongzhi et al. Ti2Al(C, N) solid solution reinforcing TiAl based composites: evolution of a core-shell structure, interfaces, and mechanical properties, ACS Applied Materials & Interface, 2018, 10(19): 16783-16792 [7] Song Xiaojie; Cui Hongzhi et al. Effect of carbon reactant on microstructures and mechanical properties of TiAl/Ti2AlC composites, Materials Science & Engineering A, 2017, 684: 406-412 [8] 参编专著《等离子束表面强化技术》《激光熔覆高熵合金耐蚀耐磨涂层》,参编教材《材料分析测试技术》《材料现代研究方法》《海洋材料表面工程》 |
知识产权情况 |
授权发明专利10余项,软件著作权4项,代表性知识产权: [1] 一种高铁制动盘超厚梯度耐磨层及其制备方法, 2022-5-31, 中国, ZL202110448668.2 [2] 具有多级岛状结构耐磨涂层及其制备方法,2022-04-19, 中国, ZL202110449899.5 [3] 一种海洋环境使用的胞状和柱状组合结构涂层及制备方法, 2022-03-25, 中国, ZL202110449831.7 [4] 一种等离子与激光复合的增材制造方法, 2022-11-15, 中国, ZL202210274501.3 [5] BS架构耐磨蚀涂层材料数据库管理系统V1.0, 2020SR1142216, 原始取得, 全部权利, 2020-5-10 |