个人简介
2010.32015.7 大连理工大学材料加工博士
2008.92010.3 大连理工大学材料加工硕士
2004.92008.7 大连理工大学材料物理学士
研究领域
高熵合金及高熵陶瓷
复合材料结构设计与优化
高温热结构材料强韧化
难变形材料超塑成形
近期论文
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[1] Y.F. Zu, K. Wang, S.S. Lv, et al. Interfacial microstructure and mechanical properties of the superplastically joined TiO2-doped ZTA ceramics, Materials Science and Engineering A, 2020, 779: 139121. (SCI、EI收录, IF=6.044,JCR:Q1,中科院1区,TOP期刊)
[2] Y.J. Liu, Y.F. Zu*, H.L. Tian, et al. Microstructure and mechanical properties of continuous carbon fiber-reinforced ZrB2-based composites via combined electrophoretic deposition and sintering, Journal of the European Ceramic Society. 2021, 41: 1779-1787.(SCI、EI收录, IF=6.364,JCR:Q1,中科院1区,TOP期刊)
[3] S.S. Lv, Y.F. Zu*, G.Q. Chen*, et al. A multiple nonmetallic atoms co-doped CrMoNbWTi refractory high-entropy alloy with ultra-high strength and hardness, Materials Science and Engineering A, 2020, 795: 140035. (SCI、EI收录, IF=6.044,JCR:Q1,中科院1区,TOP期刊)
[4] S.S. Lv, Y.F. Zu, G.Q. Chen*, et al. An ultra-high strength CrMoNbWTi-C high entropy alloy co-strengthened by dispersed refractory IM and UHTC phases, Journal of Alloys and Compounds. 2019, 788: 1256-1264. (SCI、EI收录, IF=6.371,JCR:Q1,中科院TOP期刊)
[5] 吕莎莎, 祖宇飞, 陈国清*, 等. 陶瓷颗粒增强Cr0.5MoNbWTi难熔高熵合金复合材料的制备及其力学性能. 无机材料学报, 2021, 36(4): 386-392. (SCI、EI收录, IF=1.041,JCR:Q3)
[6] Y.F. Zu, G.Q. Chen*, X.S. Fu, et al. Liquid phase assisted superplastic deformation of TiO2-doped ZTA ceramics, Materials, 2019, 12, 2050. (SCI、EI收录, IF=3.748,JCR:Q1)
[7] Y.F. Zu, J.J.Sha*, J. Li et al. Effect of multi-walled carbon nanotubes on microstructure and fracture properties of carbon fiber-reinforced ZrB2-based ceramic composite, Ceramics International. 2017, 43: 7454-7460. (SCI、EI收录, IF=5.532,JCR:Q1,中科院1区,TOP期刊)
[8] 祖宇飞, 陈国清*, 付雪松, 等. 氧化物陶瓷高速超塑性研究进展, 中国科学:技术科学. 2015, 45(4):377-388.
[9] Y.F. Zu, G.Q. Chen*, X.S. Fu, et al. Effects of liquid phases on densification of TiO2-doped Al2O3-ZrO2 composite ceramics, Ceramics International. 2014, 40: 3989-3993. (SCI、EI收录, IF=5.532,JCR:Q1,中科院1区,TOP期刊)
[10] G.Q. Chen*, Y.F. Zu, X.S. Fu, et al. Microstructure and superplastic behavior of TiO2-doped Al2O3–ZrO2(3Y) composite ceramics, Materials Science and Engineering A. 2012, 554: 6-11. (SCI、EI收录, IF=6.044,JCR:Q1,中科院1区,TOP期刊)