樂雄,講師,博士,現(xiàn)主要研究方向為金屬材料超聲表面處理、電磁沖擊強化等。以第一作者在Materials Science & Engineering A、Materials Characterization、Journal of Manufacturing Processes、Surface and Coatings Technology、Journal of Materials Science和Materials Today Communications等期刊發(fā)表SCI論文6篇,在金屬材料塑性加工領域授權發(fā)明專利3項。博士研究超高強度航發(fā)軸承鋼梯度納米結構構筑及調(diào)控獲武漢理工大學科學技術獎二等獎(唯一學生),并獲得武漢理工大學卓越獎學金(連續(xù)四年)等。
[1] Xiong Yue, Shan Hu, Xiaokang Wang, Yanxiong Liu, Fei Yin*, Lin Hua*. Understanding the nanostructure evolution and the mechanical strengthening of the M50 bearing steel during ultrasonic shot peening[J]. Materials Science & Engineering A, 836 (2022) 142721.
[2] Xiong Yue, Qian Sun, Shan Hu, Fei Yin*, Lin Hua*. Understanding the recrystallization and phase transformation of gradient nanostructured M50 steel under the athermal effect of electrical pulses[J]. Materials Characterization, 203 (2023) 113072.
[3] Xiong Yue, Feng Wang, Fei Yin*, Lin Hua*, Jian Wang*, Understanding the thermal stability and friction behavior of ultrasonic shot peening-introduced gradient nanostructured M50 bearing steel, Surface and Coatings Technology, 482 (2024) 130725.
[4] Xiong Yue, Fengmei Liu*, Qi Li, Hongbo Qin, Haitao Gao, Likun Li, Yaoyong Yi. Effect of post-bond heat treatment on microstructure and mechanical properties of the wide gap TLP bonded IC10 superalloy with a low boron Ni3Al-based interlayer[J]. Journal of Manufacturing Processes, 54 (2020) 109–119.
[5] Xiong Yue, Shan hu, Fei Yin*, Lin Hua*. Athermally induced MC carbide decomposition in gradient M50 bearing steels during electric pulse treatments[J]. Journal of Materials Science,58 (2023) 15251–15263.
[6] Xiong Yue, Shan Hu, Fei Yin*, Jian Wang*. Understanding the wear behavior and mechanism of gradient nanostructured M50 bearing steel through nanoscratching tests[J]. Materials Today Communications, 39 (2024) 109235.
[1] 尹飛,華林,樂雄. 利用電磁復合場非熱效應調(diào)控金屬材料組織的方法[P], ZL 202211034569.0.
[2] 尹飛,馬盛途,樂雄,李鵬毅. 一種提高難變形金屬材料表面納米化效率的方法[P], ZL 2021 1 0262585.4.
[3] 尹飛,馬盛途,樂雄,李鵬毅. 一種原位電脈沖提高難變形金屬材料表面納米化效率的方法[P], ZL 2021 1 0260531.4.