1993Philosophical magazine. A/Philosophical magazine. A. Physics of condensed matter. Structure, defects and mechanical propertiesRequires access

Anin situstudy of twin propagation in TiAl

S. Farenc, A. Coujou, Alain Couret

Open publisher page 85 citations

Abstract

An in situ study of twinning in a TiAl alloy has been performed in order to determine twin properties and to discuss the processes controlling twin propagation. This study shows that twinning is due to a/6⟨112] partial dislocations gliding in octahedral planes and that twinning is an intensive mode of deformation for some specimen orientations. Twins move slowly at an approximately constant velocity by a collective movement of partial dislocations which are separated by a constant distance during the motion. Twins in the TiAl alloy are perfect. A polar twin source is analysed. The occurrence of twinning with respect to other possible deformation modes is discussed and interpreted using the Schmid law. It is shown that the twin propagation is controlled by thermally activated frictional forces acting on partial dislocations and by the dragging of a stacking fault.

About this research paper

What this paper is about

An in situ study of twinning in a TiAl alloy has been performed in order to determine twin properties and to discuss the processes controlling twin propagation. This study shows that twinning is due to a/6⟨112] partial dislocations gliding in octahedral planes and that twinning is an intensive mode of deformation for some specimen orientations. Twins move slowly at an approximately constant velocity by a collective movement of partial dislocations which are separated by a constant distance during the motion. Twins in the TiAl alloy are perfect. A polar twin source is analysed. The occurrence of twinning with respect to other possible deformation modes is discussed and interpreted using the Schmid law. It is shown that the twin propagation is controlled by thermally activated frictional forces acting on partial dislocations and by the dragging of a stacking fault.

Why it matters

OpenAlex reports 85 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

An in situ study of twinning in a TiAl alloy has been performed in order to determine twin properties and to discuss the processes controlling twin propagation. This study shows that twinning is due to a/6⟨112] partial dislocations gliding in octahedral planes and that twinning is an intensive mode of deformation for some specimen orientations. Twins move slowly at an approximately constant velocity by a collective movement of partial dislocations which are separated by a constant distance during the motion. Twins in the TiAl alloy are perfect. A polar twin source is analysed. The occurrence of twinning with respect to other possible deformation modes is discussed and interpreted using the Schmid law. It is shown that the twin propagation is controlled by thermally activated frictional forces acting on partial dislocations and by the dragging of a stacking fault.

Key concepts: Crystal twinning, Partial dislocations, Materials science, Deformation (meteorology), Dislocation, Stacking fault, Condensed matter physics, Stacking

Related papers

Back to paper searchBrowse research topicsOriginal source
Anin situstudy of twin propagation in TiAl — Research Paper | ScholarLens