References
- S.A. Nikulin, V.A. Markelov, A. Yu Gusev, et al., Low-cycle fatigue tests of zirconium alloys using a dynamic mechanical analyzer, Int. J. Fatigue 48 (2013) 187-191. https://doi.org/10.1016/j.ijfatigue.2012.10.019
- S.A. Nikulin, A.B. Rozhnov, T.A. Nechaykina, et al., Effect of low hydrogenation on the low-cycle fatigue of zirconium alloy, Int. J. Fatigue 111 (2018) 1-6. https://doi.org/10.1016/j.ijfatigue.2018.02.003
- J.F. Martin, Cyclic stress-strain and fatigue properties of sheet steel as affected by load spectra, J. Test. Eval. 11 (1) (1983) 66-74. https://doi.org/10.1520/JTE11587J
- S.B. Wisner, M.B. Reynolds, R.B. Adamson, Fatigue behavior of irradiated and unirradiated zircaloy and zirconium, in: Tenth International Symposium. ASRLLDTM International, 1994.
- C. Li, S.H. Ying, B.L. Shen, et al., Cyclic stress-strain response of textured zircaloy-4, J. Nucl. Mater. 321 (2003) 60-69. https://doi.org/10.1016/S0022-3115(03)00200-9
- L.X. Cai, Y.M. Ye, C. Li, Low-cycle fatigue behavior of small slice specimens of zircaloy-4, Key Eng. Mater. 324/325 (2006) 1241-1244. https://doi.org/10.4028/www.scientific.net/KEM.324-325.1241
- J. Tan, S.H. Ying, C. Li, C. Sun, Effect of zirconium hydrides on cyclic deformation behavior of Zr-Sn-Nb alloy, Scr. Mater. 55 (2006) 513-516. https://doi.org/10.1016/j.scriptamat.2006.05.038
- Q. Jia, L.X. Cai, C. Bao, A testing method to investigate low cycle fatigue behavior of slice materials based on cycling plasticity correction, Eng. Mech. 31 (1) (2014) 218-223.
- L. Xiao L, H.C. Gu, Low cycle fatigue properties and microscopic deformation structure of zircaloy-4 in recrystallized and stress-relieved conditions, J. Nucl. Mater. 265 (1999) 213-217. https://doi.org/10.1016/S0022-3115(98)00506-6
- R.G. Sudhakar, J.K. Chakravartty, S. Nudurupati, et al., Low csycle fatigue behavior of zircaloy-2 at room temperature, J. Nucl. Mater. 441 (2013) 455-467. https://doi.org/10.1016/j.jnucmat.2013.05.068
- R.G. Sudhakar, V. Preeti, J.K. Chakravartty, et al., Inverse strain rate effect on cyclic stress response in annealed zircaloy-2, J. Nucl. Mater. 457 (2015) 330-342. https://doi.org/10.1016/j.jnucmat.2014.11.058
-
R.S. Rajpurohit, S.N.C. Santhi, S.R. Singh, V. Singh, Fatigue behavior of zircaloy-2 under asymmetric loading at
$400^{\circ}C$ , Int. J. Press. Vessel. Pip. 159 (2018) 84-92. https://doi.org/10.1016/j.ijpvp.2017.11.012 - J. Zhou, Z.K. Li, J.J. Zhang, F. Tian, Effect of hydrogen content on low-cycle fatigue behavior of Zr-Sn-Nb alloy, Rare Metal Mater. Eng. 41 (9) (2012) 1531-1534. https://doi.org/10.1016/S1875-5372(13)60006-5
- J.H. Li, Z.Y. Wang, C. Yao, Y.C. Xin, et al., Effect of hydride precipitation on the fatigue cracking behavior in a zirconium alloy claddind tube, Int. J. Fatigue 129 (2019) 105230. https://doi.org/10.1016/j.ijfatigue.2019.105230
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