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李翱翔

发布时间:2026-03-17 阅读数:

李翱翔,中共党员,工学博士,2026年1月毕业于燕山大学永利3044集团官网,同年3月入职永利3044集团官网。主要从事合金强韧化、金属涂层的设计与研发以及稀土永磁材料服役性能方面的研究。

邮箱:liaoxiang@sxnu.edu.cn

办公地点:北区2号教学楼A305室

教育经历:

2026年3月-至今,永利3044集团官网,永利3044集团官网,材料科学研究院,讲师;

2020年9月-2026年1月,燕山大学永利3044集团官网,材料学,工学博士;

2016年9月-2020年6月,哈尔滨理工大学永利3044集团官网,金属材料工程,工学学士;

[1] A.X. Li, et al. Double heterogeneous structures induced excellent strength-ductility synergy in Ni40Co30Cr20Al5Ti5 medium-entropy alloy. Journal of Materials Science & Technology 181 (2024) 176-188.

[2] A.X. Li, et al. Pursuing ultrahigh strength-ductility CoCrNi-based medium-entropy alloy by low-temperature pre-aging. Journal of Materials Science & Technology 220 (2025) 115-128.

[3] A.X. Li, et al. Ultra-high strength and excellent ductility high entropy alloy induced by nano-lamellar precipitates and ultrafine grain structure. Materials Science & Engineering A 862 (2023) 144286.

[4] A.X. Li, et al. Achieving excellent strength-ductility synergy in CoCrFeNi2Al0.3Ti0.25 high entropy alloy via analogous harmonic structure and dual-morphology L12 precipitates strengthening. Intermetallics 185 (2025) 108885.

[5] A.X. Li, et al. Heterogeneous structure and dual precipitates induced excellent strength-ductility combination in CoCrNiTi0.1 medium entropy alloy. Materials Science & Engineering A 912 (2024) 146992.

[6] A.X. Li, et al. Effect of C content on microstructure evolution and mechanical properties of CoCrFeNiTa0.1 high entropy alloy. Journal of Alloys and Compounds 1002 (2024) 175138.

[7] A.X. Li, et al. Development and characterization of CoCrFeNi high entropy alloy composites reinforced by B4C ceramic particles. Intermetallics 181 (2025) 108740.