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荔琴

个人简历

荔琴,工学博士,主要从事金属结构材料等的热、动力学研究。作为研究骨干参与军科委基础加强计划项目课题、国防基础科研计划项目、国家自然科学基金青年项目和湖南省自然科学基金杰出青年基金项目等5项。累计在Journal of Magnesium and Alloys、Journal of Alloys and Compounds和CALPHAD等国际SCI期刊发表论文20余篇,其中第一作者/共同通讯作者论文8篇。近年参加国内外学术会议10余次,获得中国材料大会高温合金分会优秀墙报奖、中国有色金属材料大会材料基因组分会优秀报告奖等4次。曾获中南大学研究生校长创新奖、中南大学优秀学生称号等荣誉4次。

成果列表

[1] Li, Q.; Xu, H.*; Zhang, L.* Phase equilibria and crystal structures of ternary compounds in the Mg-Gd-Ag system over a composition range of 0-50 at.% Gd at 450 and 500°C. J. Magnesium Alloys 2026, 14, 101619.

[2] Li, Q.; Zhong, J.*; Wu, X.; Fu, H.; Zhang, L.* High-throughput determination of accurate interdiffusivity matrices and atomic mobilities in fcc Co-Mn-X (X = Fe, Ni) alloys. J. Alloys Compd. 2024, 980, 173540.

[3] Li, Q.; Zhong, J.*; Wu, X.; Fu, H.; Zhang, L.* Efficient acquisition of interdiffusion coefficients matrices and atomic mobilities of fcc Co-Mn-Cr alloys by combining diffusion couple experiments and HitDIC software. CALPHAD 2023, 83, 102635.

[4] Li Q.; Chen S.; Zhang Y.; Deng C.; Zhang L.* Stress-induced formation of µ-TCP phase during the early-stage interdiffusion process in the NiCrAlY/NiAlCoCrW model coating/superalloy system at ambient temperature. J. Alloys Compd. 2021, 891, 161980.

[5] Li, Q.; Zhong, J.; Tang, Y.; Deng, C.; Zhang, L.* Composition-Dependent Interdiffusivity Matrices of Ordered bcc_B2 Phase in Ternary Ni–Al–Ru System at 1273∼1473 K. Int. J. Mater. Res. 2022, 113, 372–38.

[6] Zhang, J.; Zhong, J.; Li, Q.*; Zhang, L*. Nb/Sn Liquid-Solid Reactive Diffusion Couples and Their Application to Determination of Phase Equilibria and Interdiffusion Coefficients of Nb-Sn Binary System. Materials 2022, 15, 113.

[7] Shang Y.; Cao D.; Li Q.*; Yang K.; Deng C.; Zhang L.* Application of two-step diffusion couple technique in High-throughput screening of optimal composition and aging temperatures for alloys design: A demonstration in binary Ni-Al system. J. Min. Metall., Sect. B 2021, 57 (2), 175-184.

[8] Li, Q.; Chen, W.; Zhong, J.; Zhang, L.*; Chen, Q.; Liu, Z.K. On Sluggish Diffusion in Fcc Al–Co–Cr–Fe–Ni High-Entropy Alloys: An Experimental and Numerical Study. Metals 2017, 8, 16.

[9] Wei, Y.; Chen, S.; Jin, Y.; Zhang, M.; Li, Q.; Jiang, Y.; Guan, L.; Zhang, L. Effect of Al/Cr addition on microstructure and mechanical properties of Ni-rich nitinol alloys. J. Mater. Res. Technol. 2025, 36, 4490-4500.

[10] Fu, H.; Gao, T.; Gao, J.; Li, Q.; Meng, X.; Zhang, M.; Ling, H.; Zhong, J.; Zhang, L. Breaking hardness and electrical conductivity trade-off in Cu-Ti alloys through machine learning and Pareto front. Mater. Res. Lett. 2024, 12(8), 580-589.

[11] Chen, S.; Tang, Q.; Li, Q.; Xu, H.; Zhao, J.; Zhang, L. High-throughput screening of multicomponent alloy compositions with optimal mechanical properties using two-step diffusion multiple: Demo in Al-Co-Cr-Fe-Ni-Ti high-entropy superalloys. Mater. Sci. Eng. A 2024, 910, 146909.

[12] Ta, N.; Zhang, L.; Li, Q. Research on the oxidation sequence of Ni-Al-Pt alloy by combining experiments and thermodynamic calculations. AIMS Mater. Sci. 2024, 11, 1083-1095.

[13] Yang, L.; Yuan, Y.; Chen, T.; Wu, J.; Li, Q.; Wang, J.; Tang, A.; Zhang, L.; Moelans, N.; Pan, F. Interdiffusion and atomic mobility of the Mg-Ag-Zn system. J. Mater. Res. Technol. 2023, 25, 7353-7363.

[14] Yang, L.; Yuan, Y.; Li, Q.; Wu, J.; Chen, T.; Wang, J.; Zuo, X.; Tang, A.; Zhang, L.; Moelans, N.; Pan, F. Interdiffusion and atomic mobility of the Mg-Sn-Zn system. Calphad 2023, 80, 102524.

[15] Zhao, Y.; Zhu, X.; Xu, H.; Li, N.; Li, Q.; Zhong, J.; Ding, N.; Liu, L.; Cheng, K.; Zhou, J.; Wang, X.; Zhang, L. Experimental determination and high-throughput calculation of the interdiffusion coefficient matrix and atomic mobility in Ag-rich fcc Ag-Sn-Zn alloys. Calphad 2023, 83, 102632.

[16] Deng, P.; Yin, B.; Li, Q.; Zhong, J.; Liu, Y.; Zhang, L.; Deng, C. Tuning the secondary reaction zone between PtAl coating and nickel based single crystal superalloy during high-temperature oxidation through regulating aluminizing time. Surf. Interfaces 2023, 38, 102807.

[17] Yin, B.; Ni, J.; Deng, P.; Li, Q.; Mao, J.; Zhang, L.; Deng, C. Microstructure evolution and interdiffusion of PtAl coated a third generation single crystal superalloy during thermal exposure. Vacuum 2022, 203, 111225.

[18] Peng, Y.; Wang, H.; Li, Q.; Wang, L.; Zhang, W.; Zhang, L.; Guo, S.; Liu, Y.; Liu, S.; Ma, Q. Effect of Mo on interdifussion behaviors and interfacial characteristics in multicomponent diffusion couple of FeCoCrNi high entropy alloys and diamond. Mater. Des. 2022, 215, 110522.

[19] Zhong, J.; Li, Q.; Deng, C.; Zhang, L. Automated development of an accurate diffusion database in Fcc AlCoCrFeNi high-entropy alloys from a big dataset of composition profiles. Materials 2022, 15, 3240.

[20] Liu, Y.; Yin, B.; Deng, C.; Li, Q.; Zhang, L.; Deng, P.; Yang, K.; Wu, C.; Liu, M. Microstructure evolution and interdiffusion behaviors of (Ni,Pt)Al coating with and without Re-diffusion barrier on IC21 substrate at 1100°C. Mater. Charact. 2021, 181, 111450.

[21] Xie, S.; Zhang, J.; Li, R.; Yuan, T.; Zhang, M.; Wang, M.; Zhang, Z.; Deng, S.; Li, Q. Accelerated precipitation of the B2 particles and its effect on Al0.3CoCrFeNi high-entropy alloy by electric current assisted annealing. Mater. Charact. 2021, 181, 111434.

[22] Chen, S.; Li, Q.; Zhong, J.; Xing, F.; Zhang, L. On diffusion behaviors in face centered cubic phase of Al-Co-Cr-Fe-Ni-Ti high-entropy superalloys. J. Alloys Compd. 2019, 791, 255-264.

[23] Ta, N.; Zhang, L.; Li, Q.; Lu, Z.; Lin, Y. High-temperature oxidation of pure Al: Kinetic modeling supported by experimental characterization. Corros. Sci. 2018, 139, 355-369.

[24] Chen, W.; Li, Q.; Zhang, L. A Novel Approach to Eliminate the Effect of External Stress on Interdiffusivity Measurement. Materials 2017, 10, 961.

[25] Che, C.; Yang, S.; Wei, M.; Zhang, L.; Li, Q.; Gao, J.; Du, Y. Microstructure, hardness and interfacial energy in Co-9Al-10W-xNi (x=15, 25, 35 at.%) alloys during aging. J. Min. Metall., Sect. B 2017, 53, 303-308.

[26] Zhang, L.J.; Chen, J.; Chen, W.M.; Ta, N.; Li, Q. Interdiffusion Databanks of γ, γ′ and β Phases in NiAl-Based Ternary Systems. DF 2017, 13, 136-166.

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