Martensitic transformations in Ni50Ti40Cu10 are well known to proceed with a two-step process, from B2 austenite to monoclinic B19′ with intermediate orthorhombic B19. These transformations can be readily followed by X-ray diffraction especially in solution heat-treated materials through split and distribution of the main diffraction lines, while peaks broadening and overlap make the transformations more difficult to be described in highly defective materials. The present study addresses the effect of defects and chemical inhomogeneities on the martensitic transformation, placing particular emphasis on the crystallography of the low temperature B19 to B19′ phase transition. Lattice strains proved to be a powerful tool to monitor the martens...
The "Step-wise stimulated Martensite to Austenite Reversible Transformation" (SMART) in NiTi alloys ...
Martensitic transformations are diffusionless shear transformations. The transformation is usually d...
The evolution of microstructure in the bulk of a massive Ti4 9 Ni51 single crystal has been studied ...
Martensitic transformations in Ni50Ti40Cu10 are well known to proceed with a two-step process, from ...
Martensitic transformations and strain variation in amorphous-crystalline thin ribbons of Ti50Ni25C...
Many macroscopic behaviors of the martensitic transformations are difficult to explain in the frame ...
The crystal lattices of cooling-induced (thermal) martensites formed in thermally and thermomechanic...
Martensitic transformation (MT) and properties of anelasticity have been investigated. The calculati...
X-ray diffractometric study of Ti-47.0 te 50.7 at. % Ni alloys has been performed. A concentration d...
The structure of melt-spun Ti50Ni25Cu25 ribbons after various heat treatments has been studied by X-...
Understanding the martensitic transformation mechanism is of critical importance to control martensi...
In-situ electron microscopy observations of the martensitic transformation and the martensitic phase...
Structural changes with cooling and heating of Ni-Ti alloys involve three phases : austenite, R-phas...
This paper presents experimental data on the microstructure and martensite transformation temperatur...
This paper gives details about the B19-rhombohedral martensitic transformations in TiNi44.5Cu5.5 Sha...
The "Step-wise stimulated Martensite to Austenite Reversible Transformation" (SMART) in NiTi alloys ...
Martensitic transformations are diffusionless shear transformations. The transformation is usually d...
The evolution of microstructure in the bulk of a massive Ti4 9 Ni51 single crystal has been studied ...
Martensitic transformations in Ni50Ti40Cu10 are well known to proceed with a two-step process, from ...
Martensitic transformations and strain variation in amorphous-crystalline thin ribbons of Ti50Ni25C...
Many macroscopic behaviors of the martensitic transformations are difficult to explain in the frame ...
The crystal lattices of cooling-induced (thermal) martensites formed in thermally and thermomechanic...
Martensitic transformation (MT) and properties of anelasticity have been investigated. The calculati...
X-ray diffractometric study of Ti-47.0 te 50.7 at. % Ni alloys has been performed. A concentration d...
The structure of melt-spun Ti50Ni25Cu25 ribbons after various heat treatments has been studied by X-...
Understanding the martensitic transformation mechanism is of critical importance to control martensi...
In-situ electron microscopy observations of the martensitic transformation and the martensitic phase...
Structural changes with cooling and heating of Ni-Ti alloys involve three phases : austenite, R-phas...
This paper presents experimental data on the microstructure and martensite transformation temperatur...
This paper gives details about the B19-rhombohedral martensitic transformations in TiNi44.5Cu5.5 Sha...
The "Step-wise stimulated Martensite to Austenite Reversible Transformation" (SMART) in NiTi alloys ...
Martensitic transformations are diffusionless shear transformations. The transformation is usually d...
The evolution of microstructure in the bulk of a massive Ti4 9 Ni51 single crystal has been studied ...