1. 科研项目: [1] 面心立方高熵合金氢致孪生诱导塑性效应的微观调控及其抗氢脆机理研究,202501-202712,主持,在研,国家自然科学基金。 [2] 基于深冷轧制的高强度高熵合金氢脆行为研究,2019.05-2022.04主持,结题,上海市科委。 [3] 纳米共格析出强化型高熵合金的氢脆行为及机理研究,2022.09-2024.09,主持,结题,中国博士后基金。 [4] 高品质氧化镁涂层制备及应用研究,2020.06-2021.09,主持,结题,上海振泰实业有限公司。 2. 代表性学术论文: 第一作者: [1] Min Liu, et. al, Microstructural evolution and mechanical properties of the CoCrFe0.2NiMn and CoCrFe4NiMn high entropy alloys, Materials Science & Engineering A 946 (2025) 149067. [2] Min Liu, et. al, Study on the hydrogen embrittlement and electrochemical behavior of an ultrahighstrength Cu/Timicroalloyed highentropy alloy, MRS Communications (2025) 15:240–247. [3] Min Liu, et. al, Effect of heat treatment on hydrogen embrittlement susceptibility of Al0.25CoCrFeNi high entropy alloy, Engineering Failure Analysis 162 (2024) 108432. [4] Min Liu, et. al, Phase selection and mechanical properties of CoCrFexNiMn multicomponent alloys with equivalent electron concentrations, Metallurgical and Materials Transactions A 54 (2023) 3871–3881. [5] Min Liu, et. al, Tailoring the strength and ductility of Al0.25CoCrFeNi high entropy alloy through cryo-rolling and annealing, Materials Science & Engineering A 826 (2021) 141964. [6] Min Liu, et. al, Microstructures and hardnesses of CoCr0.5FexNi2.5 high entropy alloys with equal valence electron concentration, Journal of Alloys and Compounds, 824 (2020) 153881. [7] M. Liu, et. al, Influence of cooling path after rolling on sulfide stress cracking behavior for casing steel, International Journal of Hydrogen Energy, 45 (2020) 1114-1124. [8] M. Liu, et. al, Effect of microstructure and crystallography on sulfide stress cracking in API-5CT-C110 casing steel, Materials Science and Engineering: A, 671 (2016) 244-253. [9] M. Liu, et. al, Effect of quenching and tempering process on sulfide stress cracking susceptibility in API-5CT-C110 casing steel, Materials Science and Engineering: A, 688 (2017) 378-387. [10] M. Liu, et. al, Microstructure evolution and mechanical properties in 1Cr low alloy steel with different heat treatments, Materials Science and Engineering: A, 705 (2017) 291-299. [11] Min Liu, et. al, Effect of Annealing Treatment on the Microstructure and Hardness of AlxCoCrFeNi (x = 0.75, 1.25) High Entropy Alloys, Journal of Materials Engineering and Performance, 31 (2021) 1444-1455. [12] 刘敏, 等.GH4169高温合金的疲劳行为研究.有色金属材料与工程, 2024, 45(05): 18-25. 通讯作者: [1] Fan Yang, ... , Min Liu, et. al, Preparation and wear resistance of in situ-generated Cu-CoCrFeNiTi high entropy alloy composite coating on Cu substrate by laser cladding, Applied Surface Science, 2025,172: 164261. [2] Menglu Jian, Min Liu*, et. al, Effects of deformation and annealing on microstructure and mechanical properties of CoCrFe8NiMn alloy, Journal of Materials Science (2025) 60:4020–4034. [3] Fan Yang, ... , Min Liu*, et. al, Effects of Ti Content on the Microstructure and Mechanical Properties of Al0.2CoCrFeNi2Tix High-Entropy Alloys,Metals and Materials International (2025) 31:981–993. [4] Menglu Jian, Min Liu*, et. al, Effect of Phase Constitution on Hydrogen Embrittlement Resistance of Dual-Phase AlCoCr0.5FexNi2.5 High-Entropy Alloys, Journal of Materials Engineering and Performance, 2025. [5] Han Hu, ... , Min Liu, et. al, High temperature oxidation behavior of the dual-phase AlCoCr0.5Fe2.5Ni2.5 and single phase Al0.25CoCrFeNi high entropy alloys, Intermetallics 176 (2025) 108553. [6] Fangjie Li, Min Liu*, et. al, Phase formation and elemental transport in the vacuum diffusion bonding between CoCrFe0.2NiMn and CoCrFe16NiMn multicomponent alloys,Vacuum 226 (2024) 11326. [7] Shidong Zhang, Min Liu*, et. al, Immunity of Al0.25CoCrFeNi high-entropy alloy to hydrogen embrittlement, Materials Science & Engineering A, 821 (2021) 141590. [8] Qin Shen, Min Liu*, et. al, Microstructures and mechanical properties of the precipitation strengthened Al0.4Cr0.7FexNi2V0.2 high entropy alloys, Materials Science & Engineering A 864 (2023) 144606. [9] M. Luo, M. Liu*, Effect of tempering temperature at high temperature zone on sulfide stress cracking behavior for casing steel, Engineering Failure Analysis, 105 (2019) 227-236. [10] Fangjie Li, ... , Min Liu*, A New Criterion for Prediction of Phase Stability in Al‐Containing High Entropy Alloys. Physica Status Solidi B-Basic Solid State Physics, 2020, p. 2000470. [11] Fangjie Li, ... , Min Liu*, Tailoring mechanical properties of AlCoCr0.5FexNi2.5 high entropy alloys by cold rolling and annealing, MRS Communications (2022) 12:716–722. [12] Fangjie Li, ... , Min Liu*, Influences of recrystallisation and σ phase precipitation on the mechanical properties of CoFeNiMnV high-entropy alloy, Materials Today Communications 32 (2022) 103909. [13] Xin Zeng, ... , Min Liu*,The phase stability at intermediate-temperature and mechanical behavior of the dual-phase AlCoCr0.5FexNi2.5 high entropy alloys, Materials Chemistry and Physics 297 (2023) 127314. [14] Song Ding, Min Liu*, Structural and Magnetic Characterization of Fe-Based Amorphous Alloy Prepared by Microwave Annealing Treatment. Journal of Electronic Materials, 2020, 49: 2402-2405. |