[1] Huan Ma, Chan Hung Shek*,
Effects of Hf on the microstructure and mechanical properties of CoCrFeNi
high entropy alloy, Journal of Alloys and Compounds, 2020, 827:154159. (IF=6.2, 中科院2区)
[2] Huan Ma, Yang Shao, Chan Hung Shek*, CoCuFeNi high entropy alloy reinforced by
in-situ W particles, Materials Science & Engineering A, 2020, 797:
140218. (IF=6.4, 中科院2区)
[3] Huan Ma, Yang Shao, Chan Hung Shek*, Microstructure, grain growth behavior and
mechanical properties of W-CoCuFeNi tungsten heavy alloys prepared by
infiltration, International Journal of Refractory Metals and Hard
Materials, 2021, 98: 105572. (IF=3.6, 中科院2区)
[4] Yaqi Cui, Huan Ma*, Li Yang, Yang Shao, Huifang Pang, Haihui
Zhu, Jin Zhang, Wanting Sun, Renguo Guan**, A multiscale-phase-structured
CrFeNiW0.1 medium entropy alloy with outstanding strength-ductility synergy, Materials
Science & Engineering A, 2025, Accepted. (IF=6.4, 中科院2区)
[5] Wanting Sun; Ying Fu*; Huan Ma**; Yu Wang; Minqiang
Gao; Xiangqing Kong; Renguo Guan, High-strength AlCoCrFeNi2.1 eutectic high entropy alloy skeleton with hollow brick wall structures by
selective laser melting, Materials Science & Engineering A, 2023,
887: 145757. (IF=6.4, 中科院2区)
[6] Yang Shao*; Wendi Zhu; Libo Ge; Liying Cui;
Weikang Yu; Huan Ma**,
Microstructure, mechanical properties and shape memory effect of a new
metastable Ti–W alloy, Materials Science & Engineering A, 2024,
895: 146208. (IF=6.4, 中科院2区)
[7] Yang
Shao*, Huan
Ma, Yibing Wang, Effect of Mo
Addition on The Microstructure and Mechanical Properties of CoCuFeNi High
Entropy Alloy, Metals, 2020, 10(8): 1017. (IF=2.9, 中科院2区)
[8] Yang Shao*, Zhihao Guo, Yibing Wang, Huan Ma, Fabrication and characterization of
NbC-CoCrFeNiMn high-entropy alloy cermets, International Journal of
Refractory Metals & Hard Materials, 2021, 94: 105388.(IF=3.6, 中科院2区)
[9] Guoming Cui, Huan Ma, Kam Wa Wong, Chan Hung Shek, Guangcun Shan*, Jiliang Zhang**, Understanding high
ordering temperature in Gd6FeBi2 magnet: Critical
behavior, electronic structure and crystal-?eld analysis, Journal of
Magnetism and Magnetic Materials, 2020, 499: 166301. (IF=2.7, 中科院2区)
[10] Yang Shao, Huan Ma, Lishan Cui*, Fine-grained
W-NiTi heavy alloys with enhanced performance, Materials
Science & Engineering A, 2018, 729: 357-361. (IF=6.4, 中科院2区)
[11] Shuancheng Meng,
Minqiang Gao*, Yan Liu, Li
Yang, Huan Ma, Jiehua Li, Jianjun Wang, Renguo Guan**, Effect
of local loading on microstructure and enhanced mechanical property of large
complex castings prepared by Al–Si–Fe–Mn–Mg–Cu alloy during squeeze casting, Journal
of Materials Science and Technology, 2024, 200: 215-226. (IF=11.2, 中科院1区)
[12] Xinrui Li, Minqiang Gao*, Huan Ma, Li Yang, Renguo Guan,
Microstructure and strength-conductivity synergy of Al-Mg-Si-Cu alloy sheets
prepared via vacuum melting and thermo-mechanical treatment, Journal of Alloys and Compounds,
2025, 1010: 177184. (IF=5.8, 中科院2区)
[13] Meilin Zhang, Hanzhong
Cui, Zhou Yang, Jie Yan, Jin Zhang*, Huan Ma, Renguo
Guan**, Hierarchical porous Co-rich PtCo thin films for alkaline seawater hydrogen
evolution with chlorine corrosion resistance, Journal of Materials Chemistry
A, 2025, 13, 7125-7135. (IF=10.8, 中科院1区)
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