When cyclically loaded in tension, superelastic Nickel Titanium (NiTi) undergoes a characteristic shakedown behavior which dramatically changes its hysteretic stress–strain response. As many uses of superelastic NiTi involve cyclic loading, a detailed understanding of the interaction between phase transformation and associated plasticity is necessary to predict the lifetime behavior of NiTi devices. Earlier macroscopic studies have dealt with this phenomenon on a bulk material level, but its microstructural origin and small scale analogues remain largely uninvestigated. To that end, low cycle, low strain-rate fatigue tests were performed on superelastic NiTi sheet to examine the local damage and accumulation of plastic deformation that cont...
Cyclic loading of superelastic NiTi shape memory alloy (SMA) causes forward and reverse austenite–ma...
The present study deals with the effects of strain rate on the functional behavior of NiTi thin wire...
The present study deals with the effects of strain rate on the functional behavior of NiTi thin wire...
When cyclically loaded in tension, superelastic Nickel Titanium (NiTi) undergoes a characteristic sh...
The non-linear nature of the superelastic phase transformation in NiTi means that conventional fatig...
Stability and fatigue are terms often referred to when discussing the durability of the shape memory...
In this paper, high-cycle fatigue mechanisms of a pseudoelastic NiTi shape memory alloy (SMA) under ...
Understanding of fatigue crack growth phenomena in shape memory alloys under superelastic conditions...
Stability and fatigue are terms often referred to when discussing the durability of the shape memory...
AbstractShape memory property characterizes the behavior of many Ti based alloys (SMAs). This proper...
International audienceThe structural fatigue of superelastic NiTi was studied with special attention...
International audienceThe structural fatigue of superelastic NiTi was studied with special attention...
NiTi (also known as Nitinol) is an almost equiatomic alloy of nickel and titanium and has many appli...
International audienceThe structural fatigue of superelastic NiTi was studied with special attention...
International audienceThe structural fatigue of superelastic NiTi was studied with special attention...
Cyclic loading of superelastic NiTi shape memory alloy (SMA) causes forward and reverse austenite–ma...
The present study deals with the effects of strain rate on the functional behavior of NiTi thin wire...
The present study deals with the effects of strain rate on the functional behavior of NiTi thin wire...
When cyclically loaded in tension, superelastic Nickel Titanium (NiTi) undergoes a characteristic sh...
The non-linear nature of the superelastic phase transformation in NiTi means that conventional fatig...
Stability and fatigue are terms often referred to when discussing the durability of the shape memory...
In this paper, high-cycle fatigue mechanisms of a pseudoelastic NiTi shape memory alloy (SMA) under ...
Understanding of fatigue crack growth phenomena in shape memory alloys under superelastic conditions...
Stability and fatigue are terms often referred to when discussing the durability of the shape memory...
AbstractShape memory property characterizes the behavior of many Ti based alloys (SMAs). This proper...
International audienceThe structural fatigue of superelastic NiTi was studied with special attention...
International audienceThe structural fatigue of superelastic NiTi was studied with special attention...
NiTi (also known as Nitinol) is an almost equiatomic alloy of nickel and titanium and has many appli...
International audienceThe structural fatigue of superelastic NiTi was studied with special attention...
International audienceThe structural fatigue of superelastic NiTi was studied with special attention...
Cyclic loading of superelastic NiTi shape memory alloy (SMA) causes forward and reverse austenite–ma...
The present study deals with the effects of strain rate on the functional behavior of NiTi thin wire...
The present study deals with the effects of strain rate on the functional behavior of NiTi thin wire...