Fully recrystallized NiTi sheets were deformed in four different temperature ranges : fully transformed martensite (T 1/3 Tm). The types and distributions of defects produced in these materials depend on the deformation temperature. The characteristic defect structures resulting from the low temperature deformation lead to different microstructures even after annealing. The thermomechanically treated as compared to the fully recrystallized NiTi alloys were subjected to thermal, mechanical and thermomechanical fatigue tests. Their microstructural origin was interpreted by TEM investigations. In conclusion it is proposed that a low ratio of pseudo-yield stress to true yield stress is responsible for good fatigue resistance. Regarding fatigue...
AbstractStructural fatigue of NiTi shape memory alloys is a key issue that should be solved in order...
The influence of annealing temperatures on the thermo-mechanical behavior of NiTi alloy in terms of ...
International audienceThe structural fatigue of superelastic NiTi was studied with special attention...
Fully recrystallized NiTi sheets were deformed in four different temperature ranges : fully transfor...
Abstract: Fully recrystallized NiTi sheets were deformed in four different temperature ranges: fully...
A binary NiTi alloy consisting of 50.7 at. % Ni was studied under cyclic tension. This alloy can sho...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
AbstractShape memory property characterizes the behavior of many Ti based alloys (SMAs). This proper...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
In this paper, high-cycle fatigue mechanisms of a pseudoelastic NiTi shape memory alloy (SMA) under ...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
Stability and fatigue are terms often referred to when discussing the durability of the shape memory...
AbstractStructural fatigue of NiTi shape memory alloys is a key issue that should be solved in order...
The influence of annealing temperatures on the thermo-mechanical behavior of NiTi alloy in terms of ...
International audienceThe structural fatigue of superelastic NiTi was studied with special attention...
Fully recrystallized NiTi sheets were deformed in four different temperature ranges : fully transfor...
Abstract: Fully recrystallized NiTi sheets were deformed in four different temperature ranges: fully...
A binary NiTi alloy consisting of 50.7 at. % Ni was studied under cyclic tension. This alloy can sho...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
AbstractShape memory property characterizes the behavior of many Ti based alloys (SMAs). This proper...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
In this paper, high-cycle fatigue mechanisms of a pseudoelastic NiTi shape memory alloy (SMA) under ...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
Progressive accumulation of stress-induced martensite during cyclic loading of NiTi shape memory all...
Stability and fatigue are terms often referred to when discussing the durability of the shape memory...
AbstractStructural fatigue of NiTi shape memory alloys is a key issue that should be solved in order...
The influence of annealing temperatures on the thermo-mechanical behavior of NiTi alloy in terms of ...
International audienceThe structural fatigue of superelastic NiTi was studied with special attention...