NiTiHf alloys have attracted considerable attention as potential high temperature Shape Memory Alloy (SMA) but the instability in transformation temperatures and significant irrecoverable strain during thermal cycling under constant stress remains a major concern. The main reason for irrecoverable strain and change in transformation temperatures as a function of thermal cycling can be attributed to dislocation formation due to relatively large volume change during transformation from austenite to martensite. The formation of dislocations decreases the elastic stored energy, and during back transformation a reduced amount of strain is recovered. All these observations can be attributed to relatively soft lattice that cannot accommodate volum...
Shape memory alloys are materials that are capable of returning to an original shape after large def...
NiTiHf alloys have emerged as potential materials for applications requiring high transformation tem...
NiTiHf alloys have emerged as potential materials for applications requiring high transformation tem...
Nickel-Titanium (NiTi) shape memory alloys have been the focus of extensive research due to its uniq...
The cyclic instability in shape memory characteristics of NiTi-based shape memory alloys (SMAs), suc...
In this study, Thermomechanical properties of Ti-50.8 and 50.7 at% Ni alloy severely deformed using ...
The cyclic instability in shape memory characteristics of NiTi-based shape memory alloys (SMAs), suc...
In this study, Thermomechanical properties of Ti-50.8 and 50.7 at% Ni alloy severely deformed using ...
NiTiHf shape memory alloys have been receiving considerable attention for high temperature and high ...
We compare the effectiveness of a conventional thermomechanical training procedure and severe plasti...
It is well known that the achievement of high transformation strains in shape memory alloys (SMAs) h...
It is well known that the achievement of high transformation strains in shape memory alloys (SMAs) h...
It is well known that the achievement of high transformation strains in shape memory alloys (SMAs) h...
It is well known that the achievement of high transformation strains in shape memory alloys (SMAs) h...
The unique ability of shape memory alloys (SMAs) to remember and recover their original shape after ...
Shape memory alloys are materials that are capable of returning to an original shape after large def...
NiTiHf alloys have emerged as potential materials for applications requiring high transformation tem...
NiTiHf alloys have emerged as potential materials for applications requiring high transformation tem...
Nickel-Titanium (NiTi) shape memory alloys have been the focus of extensive research due to its uniq...
The cyclic instability in shape memory characteristics of NiTi-based shape memory alloys (SMAs), suc...
In this study, Thermomechanical properties of Ti-50.8 and 50.7 at% Ni alloy severely deformed using ...
The cyclic instability in shape memory characteristics of NiTi-based shape memory alloys (SMAs), suc...
In this study, Thermomechanical properties of Ti-50.8 and 50.7 at% Ni alloy severely deformed using ...
NiTiHf shape memory alloys have been receiving considerable attention for high temperature and high ...
We compare the effectiveness of a conventional thermomechanical training procedure and severe plasti...
It is well known that the achievement of high transformation strains in shape memory alloys (SMAs) h...
It is well known that the achievement of high transformation strains in shape memory alloys (SMAs) h...
It is well known that the achievement of high transformation strains in shape memory alloys (SMAs) h...
It is well known that the achievement of high transformation strains in shape memory alloys (SMAs) h...
The unique ability of shape memory alloys (SMAs) to remember and recover their original shape after ...
Shape memory alloys are materials that are capable of returning to an original shape after large def...
NiTiHf alloys have emerged as potential materials for applications requiring high transformation tem...
NiTiHf alloys have emerged as potential materials for applications requiring high transformation tem...