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[2] Y. Chen(陈尧), S.J. Wang, H.Z. Li, Y.J. Liu, C. He, J. Cui, Q. Jiang, C. Liu, Q.Y. He, Q.W. Liang, L. Li, Q.Y. Wang, Nanoprecipitates assisting subsurface cracking in high-strength steel under very high cycle fatigue, Scripta Mater, 224 (2023) 115112.
[3] Y. Chen(陈尧), Q. Shuai, Y. Wu, L. Peng, X. Shao, F. Liu, C. He, L. Li, Y. Liu, Q. Wang, Fatigue-induced oxidation assisting microcrack nucleation in Mg-RE alloy under ultrasonic fatigue, Scripta Mater, 236 (2023) 115643.
[4] Y. Chen(陈尧), Q. Shuai, Y.J. Wu, L.M. Peng, X.H. Shao, F.L. Liu, C. He, L. Li, Y.J. Liu, Q.Y. Wang, S.X. Xie, Q. Chen, Oxide nodule assisting fatigue crack initiation in hierarchical anisotropic nanostructured Mg-RE alloy, Int J Fatigue, 175 (2023) 107820.
[5] Y. Chen(陈尧), C. He, F.L. Liu, C. Wang, Q. Xie, Q.Y. Wang, Y.J. Liu, Effect of microstructure inhomogeneity and crack initiation environment on the very high cycle fatigue behavior of a magnesium alloy, Int J Fatigue, 131 (2020) 105376.
[6] Y. Chen(陈尧), R.F. Zhang, C. He, F.L. Liu, K. Yang, C. Wang, Q.Y. Wang, Y.J. Liu, Effect of texture and banded structure on the crack initiation mechanism of a friction stir welded magnesium alloy joint in very high cycle fatigue regime, Int J Fatigue, 136 (2020) 105617.
[7] Y. Chen(陈尧), C. He, K. Yang, H. Zhang, C. Wang, Q.Y. Wang, Y.J. Liu, Effects of microstructural inhomogeneities and micro-defects on tensile and very high cycle fatigue behaviors of the friction stir welded ZK60 magnesium alloy joint, Int J Fatigue, 122 (2019) 218-227.
[8] Y. Chen(陈尧), F.L. Liu, Y.J. Wu, L.M. Peng, L. Li, C. He, Q. Chen, Y.J. Liu, Q.Y. Wang, Outstanding fatigue performance of Mg-Gd-Zn-Zr alloy enriched with SFs rather than LPSO Structure, Journal of Magnesium Alloys, 13 (2024) 90-100.
[9] Y. Chen(陈尧), F.L. Liu, C. He, L. Li, C. Wang, Y.J. Liu, Q.Y. Wang, Effect of ultrasonic peening treatment on the fatigue behaviors of a magnesium alloy up to very high cycle regime, Journal of Magnesium and Alloys, 10 (2022) 614-626.
[10] Y. Chen(陈尧), Q. Shuai, Y.J. Wu, L.M. Peng, N. Su, F.L. Liu, C. He, L. Li, Y.J. Liu, Q. Chen, Q.Y. Wang, Effect of heat treatment on fatigue life improvement of Mg-Gd-Zn-Zr alloy, Materials Science and Engineering: A, 906 (2024) 146563.
[11] Q. Jiang, Y. Chen(陈尧,通讯作者), Q. Shuai, F.L. Liu, L. Li, C. He, H. Zhang, C. Wang, Y.J. Liu, Q.Y. Wang(王清远,通讯作者), Fatigue-induced HCP-to-FCC phase transformation assisting crack nucleation of pure zirconium in high cycle fatigue regime, Materials Science and Engineering: A, 881 (2023) 145404.
[12] F.L. Liu, H.T. Peng, Y.J. Liu, C. Wang, Q.Y. Wang(王清远,通讯作者), Y. Chen(陈尧,通讯作者), Crack initiation mechanism of titanium alloy in very high cycle fatigue regime at 400℃ considering stress ratio effect, Int J Fatigue, 163 (2022) 107012.
[13] Y.J. Liu, Y. Chen(陈尧,通讯作者), C. He, F.L. Liu, K. Yang, L. Li, H. Zhang, C. Wang, Q.Y. Wang(王清远,通讯作者), Vacuum retarding and air accelerating effect on the high-cycle and very-high-cycle fatigue behavior of a ZK60 magnesium alloy, Mater Design, 198 (2021) 109310.
[14] Y.J. Liu, F.L. Liu, R.X. He, Q.Y. Wang, C. Wang, C. He, K.M. Kashif, Y. Chen(陈尧,通讯作者), Mechanical behaviors of electron beam welded titanium alloy up to very high cycle fatigue under different process conditions, Materials Science and Engineering: A, 802 (2021) 140685.
[15] J.N. Mai, F.L. Liu, Y. Chen(陈尧,通讯作者), L.S. Wang, Z.B. Zhong, W. Zhang, H. Zhang, C. Wang, C. He, Q.Y. Wang, Y.J. Liu(刘永杰,通讯作者), High/very-high fatigue properties and microstructure evolutions of 9Cr3W3Co turbine rotor steel at room temperature and 650 °C, Materials Science and Engineering: A, 885 (2023) 145605.
[16] Q. Jiang, Y. Chen(陈尧,通讯作者), Q. Shuai, F.L. Liu, L. Li, C. He, H. Zhang, C. Wang, Y.J. Liu, Q.Y. Wang(王清远,通讯作者), Fatigue-Induced HCP-to-FCC Phase Transformation Resulting in Two FCC-Zr Variants in Pure Zirconium, Materials, 16 (2023) 6215.
[17] M. Zhan, X. Li, H. Xiong, X.L. Yang, Y. Chen(陈尧,通讯作者), Y.J. Liu, C. Wang, L. Li, B. Xue, Y.B. Li, Q.Y. Wang, C. He(何超,通讯作者), Effect of ultrasonic peening treatment on the crack initiation behavior of extruded Mg-Gd-Zn-Zr alloys under very high cycle regime, Int J Fatigue, 193 (2025) 108812.
[18] M. Zhan, X.Y. Wang, Y.J. Dai, C. Liu, Y. Chen(陈尧,通讯作者), Y.J. Liu, C. Wang, L. Li, Q.Y. Wang, C. He(何超,通讯作者), The effect of texture on the very high cycle fatigue performance and deformation mechanism of rolled AZ31B magnesium alloys, Fatigue Fract Eng M, 47 (2024) 2521-2536.
[19] M. Zhan, X.L. Yang, S.C. Shi, Y. Chen(陈尧,通讯作者), L. Li, B. Xue, Y.B. Li, W.S. Yi, Q.Y. Wang, C. He(何超,通讯作者), Very high cycle fatigue resistance improvement of Mg-Gd-Zn-Zr alloy by introducing curved long-period stacking ordered lamellae, Journal of Magnesium Alloys, (2024) online.
[20] S.J. Wang, Q.Y. He, Q.W. Liang, J. Cui, Q. Jiang, C. Liu, C. He, L. Li(李浪,通讯作者), Y. Chen(陈尧,通讯作者), Failure behaviors of 34Cr2Ni2Mo steel up to very high-cycle fatigue, International Journal of Structural Integrity, 13 (2022) 829-844.