Documents dont l'auteur est "Jin, Liling"

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Nombre de documents: 16

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Gheribi, A. E., Chartrand, P., Belisle, È., Bale, C. W., Jin, L., & Pelton, A. (juillet 2012). Identifying optimal conditions for Mg alloy design using thermodynamic and properties databases, the Factsage software and the mesh adaptive direct searches algorithm [Communication écrite]. 9th International Conference on Magnesium Alloys and Their Applications (Mg2012), Vancouver, Canada. Non disponible

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Jin, L., Lindberg, D., Tsuchiyama, Y., & Robelin, C. (2022). A thermodynamic model for high temperature corrosion applications: The (Na₂SO₄+K₂SO₄+ZnSO₄+PbSO₄) system. Chemical Engineering Science, 260, 22 pages. Lien externe

Jin, L., Wang, J., Rousselot, S., Dollé, M., & Chartrand, P. (2019). Experimental and Thermodynamic Study of Li-O and Li₂O-P₂O₅ Systems. Canadian Journal of Chemical Engineering, 97(8), 2234-2241. Lien externe

Jin, L. (2012). Thermodynamic Modeling of Aluminum-Magnesium-Rare Earth Systems [Thèse de doctorat, École Polytechnique de Montréal]. Disponible

Jin, L., Kang, Y.-B., Chartrand, P., & Fuerst, C. D. (2010). Thermodynamic evaluation and optimization of Al–Gd, Al–Tb, Al–Dy, Al–Ho and Al–Er systems using a Modified Quasichemical Model for the liquid. Calphad-computer Coupling of Phase Diagrams and Thermochemistry, 34(4), 456-466. Lien externe

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Kang, Y.-B., Jin, L., Chartrand, P., Gheribi, A. E., Bai, K., & Wu, P. (2012). Thermodynamic evaluations and optimizations of binary Mg-light Rare Earth (La, Ce, Pr, Nd, Sm) systems. CALPHAD: Computer Coupling of Phase Diagrams and Thermochemistry, 38, 100-116. Lien externe

Kang, Y.-B., Jin, L., Jung, I.-H., Pelton, A., Chartrand, P., & Fuerst, C. D. (février 2010). Thermodynamic database development for Mg alloys with RE elements and applications to Mg alloy design [Communication écrite]. Magnesium Technology 2010 - TMS 2010 Annual Meeting and Exhibition, Seattle, WA, United states. Lien externe

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Sauriol, P., Li, D., Hadidi, L., Villazon, H., Jin, L., Yari, B., Gauthier, M., Dolle, M., Chartrand, P., Kasprzak, W., Liang, G., & Patience, G. S. (2019). Fe³⁺ reduction during melt-synthesis of LiFePO₄. Canadian Journal of Chemical Engineering, 97(8), 2196-2210. Lien externe

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Talebi-Esfandarani, M., Rousselot, S., Jin, L., Bibienne, T., Gauthier, M., Chartrand, P., Sauriol, P., Seifitokaldani, A., & Dollé, M. (2016). On the Versatility of Melt-Synthesis of LiFePO4 cathode Material. Meeting abstracts, MA2016-03(2), 1022-1022. Lien externe

Talebi-Esfandarani, M., Rousselot, S., Jin, L., Bibienne, T., Chartrand, P., Sauriol, P., Seifitokaldani, A., & Dollé, M. (2016). Melt Synthesis of LiFePO4: Fundamentals, Versatility and Application. Meeting abstracts, MA2016-02(3), 503-503. Lien externe

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Wang, J., Zhang, Z., Zhang, Y., Jin, L., & Sheng, L. (2022). Experimental measurement on the phase equilibria of the MgAgCu ternary system at 350 and 400C. Journal of Magnesium and Alloys, 10(2), 449-457. Disponible

Wang, J., Chen, P., Meng, L., & Jin, L. (2022). Investigation on the Mechanical and Corrosion Properties of ZnMnSr Alloys for Biodegradable Orthopedic Implants. Advanced Engineering Materials, 24(8), 2101581 (14 pages). Lien externe

Wang, K., Robelin, C., Jin, L., Zeng, X., & Chartrand, P. (2019). Thermodynamic description of the K, Be//F, Cl salt system with first-principles calculations. Journal of Molecular Liquids, 292, 20 pages. Lien externe

Wang, J., Zhang, Z., Zhang, Y.-N., Han, D., Jin, L., Sheng, L., Chartrand, P., & Medraj, M. (2019). Investigation on metallic glass formation in Mg-Zn-Sr ternary system combined with the CALPHAD method. Materials Letters, 256, 4 pages. Lien externe

Wang, J., Jin, L., Chen, C., Rao, W., Wang, C., & Liu, X. (2016). Critical evaluation and thermodynamic optimization of the U-Pb and U-Sb binary systems. Journal of Nuclear Materials, 480, 216-222. Lien externe

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Zhang, Z., Zhang, Q., Jin, L., Zhang, Y., Cai, T., Zhao, L., Wang, J., Jin, Z., & Sheng, L. (2020). Experimental determination of the phase equilibrium in the MgCuCa ternary system at 350C. Journal of Alloys and Compounds, 818, 7 pages. Lien externe

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