李绪逍
 

李绪逍,副研究员

研究方向:激光增材、焊接、复合材料成形等制造过程的流体、传热、热力学仿真。

邮箱:lixuxiao@nitme.ac.cn

发表SCI论文10篇,第一作者发表在IJMTM和Additive Manufacturing期刊。与美国阿贡国家实验室合作发表在Science和Physical Review X期刊。参加美国国家标准技术研究院的AM Benchmark增材制造模拟比赛,获得三项一等奖。

代表性论文:

[1] Li, X., Guo, Q., Chen, L., Tan, W., Quantitative investigation of gas flow, powder-gas interaction, and powder behavior under different ambient pressure levels in laser powder bed fusion. International Journal of Machine Tools and Manufacture, 2021, 170, 103797.

[2] Li, X., Zhao, C., Sun, T., Tan, W., Revealing transient powder-gas interaction in laser powder bed fusion process through multi-physics modeling and high-speed synchrotron X-ray imaging. Additive Manufacturing, 2020, 35, p.101362.

[3] Li, X., Tan, W., Numerical investigation of effects of nucleation mechanisms on grain structure in metal additive manufacturing. Computational Material Science, 2018, 153, pp. 159-169.

[4] Li, X., Tan, W., Numerical Modeling of Powder Gas Interaction Relative to Laser Powder Bed Fusion Process. Journal of Manufacturing Science and Engineering, 2020, 143(5): 054502.

[5] Zhao C., Parab, N.D., Li, X., Fezzaa, K., Tan, W., Rollett A.D., Sun, T., Critical instability at moving keyhole tip generates porosity in laser melting. Science, 2020, 370(6520), 1080-1086.

[6] Kouraytem, N., Li, X., Cunningham, R., Zhao, C., Parab, N., Sun, T., Rollett, A.D., Spear, A.D., Tan, W., Effect of laser-matter interaction on molten pool flow and keyhole dynamics. Physical Review Applied, 2019, 11(6), p.064054.

[7] Zhao, C., Guo, Q., Li, X., Parab, N., Fezzaa, K., Tan, W., Chen, L., Sun, T., Bulk-explosion-induced metal spattering during laser processing. Physical Review X, 2019, 9(2), p.021052.

[8] Herriott, C.F., Li, X., Kouraytem, N., Tari, V., Tan, W., Anglin, B.S., Rollett, A.D., Spear, A.D., Modelling and Simulation in Materials Science and Engineering, 2018, 27, p. 025009.

[9] Kouraytem, N., Li, X., Tan, W., Kappes, B. and Spear, A.D., Modeling process–structure–property relationships in metal additive manufacturing: a review on physics-driven versus data-driven approaches. Journal of Physics: Materials, 2021, 4(3), p.032002.

[10] Kamat, S., Li, X., Stump, B., Plotkowski, A., Tan, W., Multi-physics modeling of grain growth during solidification in electron beam additive manufacturing of Inconel 718. Modelling and Simulation in Materials Science and Engineering, 2022, 31(1), 015002.

中国科学院宁波材料技术与工程研究所激光极端制造研究中心

地址:浙江省宁波市镇海区庄市大道319号

邮编:315201