Influence of texture and grain size on martensitic transformations occurring during low-cycle fatigue of a fine-grained austenitic stainless steel
POULON-QUINTIN, Angeline
Institut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
Laboratoire de Métallurgie Physique et Génie des Matériaux [LMPGM]
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Institut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
Laboratoire de Métallurgie Physique et Génie des Matériaux [LMPGM]
POULON-QUINTIN, Angeline
Institut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
Laboratoire de Métallurgie Physique et Génie des Matériaux [LMPGM]
< Réduire
Institut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
Laboratoire de Métallurgie Physique et Génie des Matériaux [LMPGM]
Langue
en
Article de revue
Ce document a été publié dans
Advanced Engineering Materials. 2010, vol. 12, n° 10, p. 1041-1046
Wiley-VCH Verlag
Résumé en anglais
The influence of grain size and texture on microstructural changes occurring during low-cycle fatigue of an austenitic stainless steel are investigated (grain size of 2 and 20 µm). All the materials exhibited a strong ...Lire la suite >
The influence of grain size and texture on microstructural changes occurring during low-cycle fatigue of an austenitic stainless steel are investigated (grain size of 2 and 20 µm). All the materials exhibited a strong secondary hardening at high strain range as a result of a fatigue-induced martensitic transformation. α′ martensite is found to nucleate in austenitic grains containing a high density of dislocations but not at slip band intersections, as is usually reported for austenitic stainless steels. Considering the unstable composition of the steel studied and the decrease of the grain size, dislocations structures inside austenite grains are unchanged but cyclic solicitation promotes the induced transformation of austenitic phase. Localization of the martensite grains formed depends on the grain texture and the grain size inside which nucleus are formed.< Réduire
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