IFIR   05409
INSTITUTO DE FISICA DE ROSARIO
Unidad Ejecutora - UE
artículos
Título:
MICROSTRUCTURAL CHARACTERIZATION OF EUROFER 97 DURING LOW-CYCLE FATIGUE
Autor/es:
MARIA FLORENCIA GIORDANA; IRIS ALVAREZ-ARMAS; ALBERTO ARMAS
Revista:
JOURNAL OF NUCLEAR MATERIALS
Editorial:
ELSEVIER SCIENCE BV
Referencias:
Lugar: Amsterdam; Año: 2012 vol. 424 p. 247 - 251
ISSN:
0022-3115
Resumen:
The quenched and tempered reduced-activation ferritic/martensitic steel EUROFER 97 is one of the candidates for structural components of Generation IV nuclear power plants. The cyclic behaviour of this steel during isothermal plastic strain-controlled tests was investigated at room temperature and at 550 C. Under low-cycle fatigue test this steel shows, after the first few cycles, a pronounced cyclic softening accompanied by microstructural changes such as the decrease of the free dislocation density inside the subgrain. The rate of softening increases with temperature being very pronounced at temperatures above 500 C. The evolution of the flow stress during cycling was studied by analyzing the so-called ‘‘back’’ and ‘‘friction’’ stresses obtained from the hysteresis loops measured along the entire test. From the analysis of the hysteresis loops and corroborated by electron microscopy observations, it can be concluded that the strong cyclic softening observed is produced by the decrease exhibited by the friction stress. The Taylor coefficient was calculated measuring the evolution of the free dislocation density.