個人經歷
2017年6月畢業於西安交通大學。攻讀博士學位期間,在西安交通大學金屬材料強度國家重點實驗室和中國科學院力學研究所非線性力學國家重點實驗室聯合培養,主要從事塊體金屬玻璃製備、組織調控及力學性能研究。
科研經歷
研究領域
主要研究方向為金屬玻璃製備、組織調控及力學性能研究。
科研項目
[1] 非晶合金亞微米韌窩斷裂斑圖的湧現和演化動力學機制(No. 52001269),國家自然科學基金青年項目,2021.01~2023.12,24萬,項目負責人,在研;
[2] 非晶合金韌脆轉變機理及性能調控研究(No. 2019D01C034),新疆維吾爾自治區自然科學基金聯合項目,2019.05~2022.04,7萬,項目負責人,在研;
[3] 基於微結構演化的非晶合金韌脆轉變機理研究(No. BS180211),新疆大學博士啟動基金項目,2019.01~2020.12,20萬,項目負責人,在研;
[4] 基於循環熱處理的金屬玻璃回春效應研究, 新疆維吾爾自治區百名博士引進計畫(天池博士)項目,2018.10~2020.09,10萬,項目負責人,在研;
主要成就
學術成果
現主持國家自然科學基金一項、新疆維吾爾自治區自然科學基金一項,新疆維吾爾自治區“百名博士引進計畫”人才項目一項,新疆大學博士啟動基金一項。目前已在Scripta Materialia, Materials Science and Engineering: A.等國際知名學術期刊發表SCI收錄論文14篇,其中第一作者8篇。
發表論文
[1] Z.Q. Chen, M.C. Li, J.S. Cao, F.C. Li, S.W. Guo, B.A. Sun, H.B. Ke*, W.H. Wang*, Interface dominated deformation transition from inhomogeneous to apparent homogeneous mode in amorphous/amorphous nanolaminates, Journal of Materials Science & Technology. (2021) in press.
[2] M.C. Li *, H.M. Guan, S. Yang, X. Ma, Q. Li, Minor Cr alloyed Fe–Co–Ni–P–B high entropy bulk metallic glass with excellent mechanical properties, Materials Science and Engineering: A, 805 (2021) 140542.
[3] H.M. Guan, M.C. Li *, Enhancement of plasticity by cryogenic thermal cycling on Fe80P13C7 bulk amorphous alloy, Materials Letters, 300 (2021) 130195.
[4] M.C. Li, Intermediate temperature ductility under uniaxial compression in a bulk metallic glass, Materials Letters, 281 (2020) 128612.
[5] M.C. Li, Effect of annealing on strain rate sensitivity of metallic glass under nanoindentation, Metals, 10 (2020) 1063.
[6] N. Aihemaiti, Q. Li*, M.C. Li, T. Wang, C.T. Chang*, X. Ma, Preparation and properties of CoFeMoPB bulk metallic glasses, Intermetallics 123 (2020) 106834.
[7] N. Aihemaiti, Q. Li*, M.C. Li, C.T. Chang*, H.X. Li, X. Ma, Preparation of CoMoPC bulk metallic glasses using fluxing treatment and J-quenching technique, Materials Science and Technology, 36(16) (2020) 1756-1761.
[8] C.Z. Li, Q. Li*, M.C. Li, C.T. Chang*, H.X. Li, Y.Q. Dong, Y.F. Sun, New ferromagnetic (Fe1/3Co1/3Ni1/3)80(P1/2B1/2)20 high entropy bulk metallic glass with superior magnetic and mechanical properties, Journal of Alloys and Compounds, 791 (2019) 947-951.
[9] Z.H. Yue, Q. Li*, W.B. Zhang, M.C. Li, H.M. Duan, C.T. Chang, H.X. Li, Effect of mutual substitution of Fe and Ni elements on the plasticity of Fe/Ni-based amorphous alloys: Ab initio molecular dynamics simulations, Journal of Non-Crystalline Solids, 514 (2019) 46-51.
[10] K.N. Wu, C. Liu, Q. Li*, J.T. Huo, M.C. Li, C.T. Chang, Y.F. Sun, Magnetocaloric effect of Fe25Co25Ni25Mo5P10B10 high-entropy bulk metallic glass, Journal of Magnetism and Magnetic Materials, 489 (2019) 165404.
[11] M.C. Li, M.Q. Jiang, F. Jiang*, L. He, J. Sun, Testing effects on hardness of a Zr-based metallic glass under nanoindentation, Scripta Materialia, 138 (2017) 120-123.
[12] M.C. Li, M.Q. Jiang, S. Yang, F. Jiang*, L. He, J. Sun, Effect of strain rate on yielding strength of a Zr-based bulk metallic glass, Materials Science and Engineering: A, 680 (2017) 21-26.
[13] M.C. Li, M.Q. Jiang, G. Ding, Z.H. Peng, F. Jiang*, L. He, J. Sun, The correlation between weakest configurations and yield strength of Zr-based metallic glasses, Journal of Non-Crystalline Solids. 468 (2017) 52-57.
[14] M.C. Li, M.Q. Jiang, G. Li, L. He, J. Sun, F. Jiang*, Ductile to brittle transition of fracture of a Zr-based bulk metallic glass: Strain rate effect, Intermetallics, 77 (2016) 34-40.