Guo Zixu
Gender:Male
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.Xu, L., Chen, H., Jia, Y.F., Wang, D.P., Wu, S.W., Jia, Y.D., Wang, G., Guo, Z.X.*, Xu, Y.L., 2025. Revealing effects of creep damage on high-temperature fatigue behavior for HfNbTiZr refractory high-entropy alloys: Experimental investigation and crystal-plasticity modelling. Journal of Materials Science & Technology.:(Corresponding author)
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.Wan, W.F., Zhou, W.S., Guo, Z.X.*, Huang, D.W., Yan, X.J., 2026. Migration of geometrically necessary dislocations in microstructurally-sensitive short crack growth of FCC and HCP alloys. Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing.:(Corresponding author)
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.Lu, P.#, Guo, Z.X.#, Fan, X.L., Xu, Y.L., Zhang, Y.W., Yan, W.T., 2025a. Coupled modeling of rafting behaviour in nickel-based single crystal superalloys. International Journal of Mechanical Sciences.:(Co-first author)
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.Chen, Y.X.#, Guo, Z.X.#, Hu, D.J., Peng, G.C., Grilli, N., Ou, Y., Chang, H., Wang, W.H., Huang, D.W., Yan, X.J., Zhang, Y.W., Yang, R., Zhai, Z.R., Yan, W.T., Xu, Y.L., 2026. Understanding microstructure-sensitive deformation mechanisms in AMed IN738LC superalloy via in-situ EBSD-DIC. Materials & Design.:(Co-first author)
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.Guo, Z.X., Huang, D.W., Yan, X.J., Zhang, X.Y., Qi, M.J., Fan, J., 2020. A damage coupled elastic-plastic constitutive model and its application on low cycle fatigue life prediction of turbine blade. International Journal of Fatigue.
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.Guo, Z.X., Song, Z.Y., Fan, J., Yan, X.J., Huang, D.W., 2021a. Experimental and analytical investigation on service life of film cooling structure for single crystal turbine blade. International Journal of Fatigue.
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.Guo, Z.X.*, Song, Z.Y., Qin, X.Y., Wu, J., He, Y., Huang, D.W., Yan, X.J., 2024c. A rapid multidisciplinary life optimization method for turbine blades with a large number of film cooling holes. Applied Thermal Engineering.:(Corresponding author)
