The influence of orientation and aluminium content on the deformation mechanisms of Hadfield steel single crystals

Author:

Astafurova Elena G.1,Kireeva Irina V.1,Chumlyakov Yuriy I.1,Maier Hans J.2,Sehitoglu Huseyin3

Affiliation:

1. Laboratory of strength physics and plasticity, Siberian Physical Technical Institute, Tomsk, Russia

2. Lehrstuhl für Werkstoffkunde, University of Paderborn, Paderborn, Germany

3. Department of Mechanical and Industrial Engineering, University of Illinois, Urbana-Champaign, IL, USA

Abstract

Abstract The low stacking fault energy and high carbon content in Hadfield steel make twinning the basic deformation mechanism from the onset of plastic deformation in [1¯11] and [011] oriented single crystals in tension at T = 77 – 300 K. Alloying with aluminium (2.7 Al in wt.%) results in an increase of stacking fault energy from 0.03 J · m2 to 0.05 J · m−2 and moves twinning to higher degrees of deformation (∊pl > 15 %). In aluminium-free [1¯23] crystals twinning starts after 20 % strain. For [1¯23], [001] orientations, aluminium additions change the dislocation arrangement from a uniform distribution to a planar dislocation arrangment and also suppress twinning. Intersections of dislocation pile-ups were found to be the governing factor for hardening in the aluminium-alloyed [001] crystals.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics

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