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- W2934938044 abstract "The continuous and interrupted in-phase thermomechanical fatigue (IP-TMF) tests under mechanical strain-controlled mode were conducted to investigate the microcrack nucleation mechanisms and early growth behavior of a nuclear grade nitrogen alloyed austenitic stainless steel (ASS) X2CrNiMo18.12. The temperature interval of 250–450 °C, cycling period of 120s and strain amplitude of 0.8% were used. The principal deformation and damage mechanisms activated in the present work are attributed to dynamic strain aging (DSA), thermal recovery and oxidation. The oxidation-assisted intergranular cracking was attributed primarily to the slip-bands impingement and the thermal mismatch between oxide scales and substrate. The formation of persistent slip markings (PSMs) in the form of extrusions and intrusions due to occurrence of cyclic slip localization also provided a favored site for microcrack nucleation. Additionally, both the oxidized grain boundaries and PSMs acted as the preferential path for the early crack growth leading to the final failure." @default.
- W2934938044 created "2019-04-11" @default.
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- W2934938044 date "2019-05-01" @default.
- W2934938044 modified "2023-10-16" @default.
- W2934938044 title "Microcrack nucleation and early crack growth of a nuclear grade nitrogen alloyed austenitic stainless steel X2CrNiMo18.12 under thermomechanical fatigue loading" @default.
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- W2934938044 doi "https://doi.org/10.1016/j.ijpvp.2019.03.023" @default.
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