Stress-induced martensitic detwinning and martensitic transformation during step-wise compression in an austenite Ni–Mn–Ga matrix with a martensite cluster under uniaxial loading have been investigated by electron backscatter diffraction, focusing on the crystallographic features of microstructure evolution. The results indicate that detwinning occurs on twins with a high Schmid factor for both intra-plate and inter-plate twins in the hierarchical structure, resulting in a nonmodulated (NM) martensite composed only of favourable variants with [001]NM orientation away from the compression axis. Moreover, the stress-induced martensitic transformation occurs at higher stress levels, undergoing a three-stage transformation from austenite to a t...
We revisit the phase transformation that produces ‘long-period stacking’ M9R–M18R martensites in Cu-...
The strain recovery upon heating pre-deformed martensite as well as the stress-strain behaviour in c...
Superelastic NiTi (51.0 at. % Ni) specimens reinforced with 0, 10 and 20 vol. % TiC particles were d...
Observations are presented, obtained by in situ straining and conventional TEM, of a transformation ...
Ni–Mn–Ga ferromagnetic shape memory alloys appear to be very promising active materials because they...
International audienceThe influences of uniaxial compressive stress on martensitic transformation we...
Mainly two different morphologies of martensite can be obtained in steels depending on the amount of...
Stress-induced martensitic transformation in single crystals and polycrystals are examined on the ba...
Several materials exhibit a transformation from austenite to martensite during a thermomechanical l...
The deformation-induced martensitic transformation observed in specific materials can enhance their ...
Abstract. The paper is concerned with modelling of stress-induced martensitic transformations in sin...
The microstructure of stress-induced martensite and its evolution in a Ti36Ni49Hf15 alloy have been ...
Ni based magnetic shape memory alloys (MSMAs) have broad applications in actuators and MEMS devices....
Stress-induced martensitic transformations and twinning processes were studied in thin foils of CuAl...
Magnetic shape-memory alloys tend to deform via magnetic-field-induced and stress-induced twin-boun...
We revisit the phase transformation that produces ‘long-period stacking’ M9R–M18R martensites in Cu-...
The strain recovery upon heating pre-deformed martensite as well as the stress-strain behaviour in c...
Superelastic NiTi (51.0 at. % Ni) specimens reinforced with 0, 10 and 20 vol. % TiC particles were d...
Observations are presented, obtained by in situ straining and conventional TEM, of a transformation ...
Ni–Mn–Ga ferromagnetic shape memory alloys appear to be very promising active materials because they...
International audienceThe influences of uniaxial compressive stress on martensitic transformation we...
Mainly two different morphologies of martensite can be obtained in steels depending on the amount of...
Stress-induced martensitic transformation in single crystals and polycrystals are examined on the ba...
Several materials exhibit a transformation from austenite to martensite during a thermomechanical l...
The deformation-induced martensitic transformation observed in specific materials can enhance their ...
Abstract. The paper is concerned with modelling of stress-induced martensitic transformations in sin...
The microstructure of stress-induced martensite and its evolution in a Ti36Ni49Hf15 alloy have been ...
Ni based magnetic shape memory alloys (MSMAs) have broad applications in actuators and MEMS devices....
Stress-induced martensitic transformations and twinning processes were studied in thin foils of CuAl...
Magnetic shape-memory alloys tend to deform via magnetic-field-induced and stress-induced twin-boun...
We revisit the phase transformation that produces ‘long-period stacking’ M9R–M18R martensites in Cu-...
The strain recovery upon heating pre-deformed martensite as well as the stress-strain behaviour in c...
Superelastic NiTi (51.0 at. % Ni) specimens reinforced with 0, 10 and 20 vol. % TiC particles were d...