Microstructural investigations with transmission electron microscopy were carried out on quenched Ni-Ti alloys with 52 and 54.5 at% Ni. For the Ni52Ti48 specimen long time exposed diffraction patterns of a single grain show besides the expected reflections of the B2-phase, two sets of extra reflections in different zones. The first type of spots is explained by lattice displacement waves, which are regarded as precursors of the martensitic Ni-Ti phases, B19' and R-phase, respectively. The second set of reflection with more diffuse intensity than the other reflections is related to Ni4Ti3 precipitates in an early state of formation. For the Ni-richer Ni54.5Ti45.5 alloy only Ni4Ti3 precipitates in an early state of formation are found but no ...
The main properties of Ni-Ti alloys, i.e., shape memory and superelasticity, are used in engineering...
Structural changes with cooling and heating of Ni-Ti alloys involve three phases : austenite, R-phas...
The microstructure and martensitic transformation behavior of Ni50−xTi50Lax (x = 0.1, 0.3, 0.5...
Microstructural investigations with transmission electron microscopy were carried out on quenched Ni...
We measured the electrical resistivity R(T) and specific heat C$_{\rm p}$(T) between room temperatur...
Abstract. We measured the electrical resistivity R (T) and specific heat Cp (T) between room tempera...
The R-phase transformation in a Ti-51at.%Ni shape memory alloy was studied by transmission electron ...
In Ni rich Ni–Ti alloys, various phases such as hexagonal Ni3Ti, cubic NiTi2 and rhombohedral Ni4Ti3...
The present contribution will focus on recent advanced transmission electron microscopy studies of N...
The present work investigates coherent Ni4Ti3 precipitates in a Ti-50,7at%Ni shape memory alloy afte...
A microstructure of a Ti-50.7at%Ni shape memory alloy resulting from solution annealing and subseque...
Due to unique features, like shape memory effects and superelasticity, NiTi alloys with nearly equia...
Ni49.4Ti38.6Hf12 shape memory alloy has been characterized for structure, microstructure and transfo...
In the present contribution some recent results of advanced transmission electron microscopy applica...
X-ray diffractometric study of Ti-47.0 te 50.7 at. % Ni alloys has been performed. A concentration d...
The main properties of Ni-Ti alloys, i.e., shape memory and superelasticity, are used in engineering...
Structural changes with cooling and heating of Ni-Ti alloys involve three phases : austenite, R-phas...
The microstructure and martensitic transformation behavior of Ni50−xTi50Lax (x = 0.1, 0.3, 0.5...
Microstructural investigations with transmission electron microscopy were carried out on quenched Ni...
We measured the electrical resistivity R(T) and specific heat C$_{\rm p}$(T) between room temperatur...
Abstract. We measured the electrical resistivity R (T) and specific heat Cp (T) between room tempera...
The R-phase transformation in a Ti-51at.%Ni shape memory alloy was studied by transmission electron ...
In Ni rich Ni–Ti alloys, various phases such as hexagonal Ni3Ti, cubic NiTi2 and rhombohedral Ni4Ti3...
The present contribution will focus on recent advanced transmission electron microscopy studies of N...
The present work investigates coherent Ni4Ti3 precipitates in a Ti-50,7at%Ni shape memory alloy afte...
A microstructure of a Ti-50.7at%Ni shape memory alloy resulting from solution annealing and subseque...
Due to unique features, like shape memory effects and superelasticity, NiTi alloys with nearly equia...
Ni49.4Ti38.6Hf12 shape memory alloy has been characterized for structure, microstructure and transfo...
In the present contribution some recent results of advanced transmission electron microscopy applica...
X-ray diffractometric study of Ti-47.0 te 50.7 at. % Ni alloys has been performed. A concentration d...
The main properties of Ni-Ti alloys, i.e., shape memory and superelasticity, are used in engineering...
Structural changes with cooling and heating of Ni-Ti alloys involve three phases : austenite, R-phas...
The microstructure and martensitic transformation behavior of Ni50−xTi50Lax (x = 0.1, 0.3, 0.5...