Hall-Petch Relationship of a TWIP Steel

The grain size dependence of the tensile properties of a TWIP steel has been determined for a wide range of grain sizes obtained by grain growth after complete recrystallization of cold rolled material. The near-linear stress-strain behaviour typical of either TWIP steels or other materials that def...

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Veröffentlicht in:Key engineering materials 2010-01, Vol.423, p.147-152
Hauptverfasser: Gil Sevillano, J., Reis, Mónica, de las Cuevas, F., Ferraiuolo, A., Pratolongo, G., Karjalainen, L. Pentti, Alkorta, Jon
Format: Artikel
Sprache:eng
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Zusammenfassung:The grain size dependence of the tensile properties of a TWIP steel has been determined for a wide range of grain sizes obtained by grain growth after complete recrystallization of cold rolled material. The near-linear stress-strain behaviour typical of either TWIP steels or other materials that deform by twinning has been observed, the work hardening rate being larger for the smaller grain sizes. The Hall-Petch slope increases as a function of strain, from 350 MPa μm1/2 for the yield stress to 630 MPa μm1/2 for the maximum uniform strain in the tensile tests, ε  0.40. Profuse twinning is observed in deformed specimens by means of FIB-ISE.
ISSN:1013-9826
1662-9795
1662-9795
DOI:10.4028/www.scientific.net/KEM.423.147