Cyclic loading of superelastic NiTi shape memory alloy (SMA) causes forward and reverse austenite–martensіte transformations, and also increases the volume of stabilized martensite. This appears in the change of stress-strain curve form, the decrease of dissipation energy, and increase of residual strain, that is, named transformation ratcheting. In real structures, the SMA components in most cases are under the action of variable amplitude loading. Therefore, it is obvious that the loading history will influence the functional fatigue. In the present work, the effect of stress ratio on the functional properties of superelastic NiTi shape memory alloy under variable amplitude loading sequence with two blocks was investigated. The studies we...
AbstractShape memory property characterizes the behavior of many Ti based alloys (SMAs). This proper...
When cyclically loaded in tension, superelastic Nickel Titanium (NiTi) undergoes a characteristic sh...
When cyclically loaded in tension, superelastic Nickel Titanium (NiTi) undergoes a characteristic sh...
Cyclic loading of superelastic NiTi shape memory alloy (SMA) causes forward and reverse austenite–ma...
In this paper, high-cycle fatigue mechanisms of a pseudoelastic NiTi shape memory alloy (SMA) under ...
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...
The influence of the cyclic loading on the functional properties of NiTi was studied. Cylindrical sp...
The influence of the cyclic loading on the functional properties of NiTi was studied. ...
The influence of the cyclic loading on the functional properties of NiTi was studied. Cylindrical sp...
It has been shown that quasi-static, cyclic, isothermal mechanical loading influences the mechanical...
[eng] In this work, we report an anomalous phenomenon on superelastic cycling of NiTi shape memory a...
NiTi (also known as Nitinol) is an almost equiatomic alloy of nickel and titanium and has many appli...
The effects of strain amplitude variation on the functional properties of a superelastic NiTi wire w...
The effects of strain amplitude variation on the functional properties of a superelastic NiTi wire w...
AbstractShape memory property characterizes the behavior of many Ti based alloys (SMAs). This proper...
When cyclically loaded in tension, superelastic Nickel Titanium (NiTi) undergoes a characteristic sh...
When cyclically loaded in tension, superelastic Nickel Titanium (NiTi) undergoes a characteristic sh...
Cyclic loading of superelastic NiTi shape memory alloy (SMA) causes forward and reverse austenite–ma...
In this paper, high-cycle fatigue mechanisms of a pseudoelastic NiTi shape memory alloy (SMA) under ...
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...
The influence of the cyclic loading on the functional properties of NiTi was studied. Cylindrical sp...
The influence of the cyclic loading on the functional properties of NiTi was studied. ...
The influence of the cyclic loading on the functional properties of NiTi was studied. Cylindrical sp...
It has been shown that quasi-static, cyclic, isothermal mechanical loading influences the mechanical...
[eng] In this work, we report an anomalous phenomenon on superelastic cycling of NiTi shape memory a...
NiTi (also known as Nitinol) is an almost equiatomic alloy of nickel and titanium and has many appli...
The effects of strain amplitude variation on the functional properties of a superelastic NiTi wire w...
The effects of strain amplitude variation on the functional properties of a superelastic NiTi wire w...
AbstractShape memory property characterizes the behavior of many Ti based alloys (SMAs). This proper...
When cyclically loaded in tension, superelastic Nickel Titanium (NiTi) undergoes a characteristic sh...
When cyclically loaded in tension, superelastic Nickel Titanium (NiTi) undergoes a characteristic sh...