"Effect of microstructure on low cycle fatigue properties of ODS steels" . "RIV/00216305:26210/12:PU97355!RIV15-MSM-26210___" . . . "Low cycle fatigue properties at room temperature, 650 C and 750 C of three high chromium steels (9%Cr ferritic\u2013martensitic and two 14%Cr ferritic steels) strengthened by oxide dispersion were studied and compared. Cyclic softening/hardening curves, cyclic deformation curves, S\u2013N curves and Coffin\u2013Manson curves are presented together with microstructural observations. Differences in cyclic response, stress level and fatigue life are attributed to differences in the matrix microstructure. The oxide particles stabilize the cyclic response, even if cyclic softening is detected for some experimental conditions. The strength of these steels is discussed in terms of strengthening mechanisms such as grain size effect, particle-dislocations interaction and dislocation density. Comparing three different ODS steels offers an opportunity to tests the contribution of individual mechanisms to the cyclic strength. The reduction of fatigue life in one of the ferritic steels is explained by the presence of large" . "P(ED1.1.00/02.0068), P(GA106/09/1954), S, Z(AV0Z20410507)" . . . . "Low cycle fatigue properties at room temperature, 650 C and 750 C of three high chromium steels (9%Cr ferritic\u2013martensitic and two 14%Cr ferritic steels) strengthened by oxide dispersion were studied and compared. Cyclic softening/hardening curves, cyclic deformation curves, S\u2013N curves and Coffin\u2013Manson curves are presented together with microstructural observations. Differences in cyclic response, stress level and fatigue life are attributed to differences in the matrix microstructure. The oxide particles stabilize the cyclic response, even if cyclic softening is detected for some experimental conditions. The strength of these steels is discussed in terms of strengthening mechanisms such as grain size effect, particle-dislocations interaction and dislocation density. Comparing three different ODS steels offers an opportunity to tests the contribution of individual mechanisms to the cyclic strength. The reduction of fatigue life in one of the ferritic steels is explained by the presence of large"@en . "JOURNAL OF NUCLEAR MATERIALS" . "Effect of microstructure on low cycle fatigue properties of ODS steels" . . . "Fournier, Benjamin" . "[093B0C76D5B2]" . "RIV/00216305:26210/12:PU97355" . "1" . "26210" . . . "0022-3115" . "3"^^ . "Effect of microstructure on low cycle fatigue properties of ODS steels"@en . . . "Kub\u011Bna, Ivo" . "ODS steels, low cycle fatigue, fusion energy"@en . . "Effect of microstructure on low cycle fatigue properties of ODS steels"@en . "424" . . "Kruml, Tom\u00E1\u0161" . "1"^^ . "8"^^ . . . "NL - Nizozemsko" . "133150" . . . . .