陶骁
发布时间:2023-11-30   浏览次数:823
 基 本 信 息

姓名:陶骁

性别:男

党派:无

职称:副研究员

地址:东南大学九龙湖校区材料A607

电子邮箱:x.tao@seu.edu.cn


研究方向:

1. 膨胀奥氏体渗层结构与耐磨蚀性能

2. 新型合金热扩渗处理与应用

3. 离子热渗镀与表界面功能化

 个 人 简 介


陶骁,男,1990年生,哲学博士,副研究员。主要从事金属热扩渗方向研究,重点关注特种合金基材成分组织、热扩渗处理环境与金属表面渗层结构演变、整体服役性能的内在影响与作用机理。截至2023年发表SCI学术论文10余篇,以第一或通讯作者在Acta MaterialiaScripta MaterialiaSurface and Coatings TechnologyApplied Surface Science等学术期刊发表8篇论文。

 

教育及工作经历:

2023.08-至今,东南大学,材料科学与工程学院,金属材料系,副研究员

2019.05-2023.06,伯明翰大学,机械工程学院/冶金与材料学院,博士后

2013.10-2018.10,谢菲尔德大学,材料科学与工程学院,哲学博士

2012.04-2012.09,罗莱合金(布莱克本),技术部,冶金工程师

2009.10-2013.06,谢菲尔德大学,材料科学与工程学院,工学硕士

 

研究兴趣/方向:

1.    膨胀奥氏体渗层结构与耐磨蚀性能

2.    新型合金热扩渗处理与应用

3.    离子热渗镀与表界面功能化

 

科研项目:

欧盟地方发展基金,智能工厂中心项目,2018-2023年,约900万,参与。

亨利莱斯研究所:设备使用计划,2021年,约5万,主持。

 

代表性论文:

1.  X. Tao, Y. Yang, J. Qi, B. Cai, W.M. Rainforth, X. Li, H. Dong, Active screen plasma nitriding of a Si-alloyed FeCrNi medium entropy alloy: High interstitial absorption and an anomalous Si-induced decomposition mechanism in N-expanded austenite, Appl. Surf. Sci. 624 (2023) 157137.

2.   X. Tao, T.J. Collins, Q. Ao, H. Liu, B. Dashtbozorg, X. Li, H. Dong, Active screen plasma nitriding of Fe-24Mn-2Al-0.45C TWIP steel: Microstructure evolution and a synergistic selective oxidation mechanism, Acta Mater. 241 (2022) 118418.

3.  B. Dashtbozorg, X. Tao, H. Dong, Active-screen plasma surface multi-functionalisation of biopolymers and carbon-based materials – An overview, Surf. Coat. Technol.  (2022) 128188.

4.  X. Tao, J. Kavanagh, X. Li, H. Dong, A. Matthews, A. Leyland, An investigation of precipitation strengthened Inconel 718 superalloy after triode plasma nitriding, Surf. Coat. Technol.  (2022) 128401.

5.   Z. Jing, S. Qi, X. Tao, H. Yu, W. Zhang, Y. Qiao, X. Li, H. Dong, Active-screen plasma multi-functionalization of graphene oxide for supercapacitor application, J. Mater. Sci. 56(4) (2021) 3296-3311.

6.   X. Tao, X. Li, H. Dong, A. Matthews, A. Leyland, Evaluation of the sliding wear and corrosion performance of triode-plasma nitrided Fe-17Cr-20Mn-0.5N high-manganese and Fe-19Cr-35Ni-1.2Si high-nickel austenitic stainless steels, Surf. Coat. Technol. 409 (2021) 126890.

7.  V. Sawyer, X. Tao, H. Dong, B. Dashtbozorg, X. Li, R. Sammons, H.-S. Dong, Improving the Tribological Properties and Biocompatibility of Zr-Based Bulk Metallic Glass for Potential Biomedical Applications, Materials 13(8) (2020).

8.  X. Tao, J. Qi, M. Rainforth, A. Matthews, A. Leyland, On the interstitial induced lattice inhomogeneities in nitrogen-expanded austenite, Scripta Mater. 185 (2020) 146-151.

9.  X. Tao, A. Matthews, A. Leyland, On the Nitrogen-Induced Lattice Expansion of a Non-stainless Austenitic Steel, Invar 36®, Under Triode Plasma Nitriding, Metall. Mater. Trans. A 51(1) (2020) 436-447.

10. X. Tao, X. Liu, A. Matthews, A. Leyland, The influence of stacking fault energy on plasticity mechanisms in triode-plasma nitrided austenitic stainless steels: Implications for the structure and stability of nitrogen-expanded austenite, Acta Mater. 164 (2019) 60-75.