Shape memory alloys that produce and recover from large deformation driven by martensitic transformation are widely exploited in biomedical devices and micro-actuators. Generally their actuation work degrades significantly within first a few cycles, and is reduced at smaller dimensions. Further, alloys exhibiting unprecedented reversibility have relatively small superelastic strain, 0.7%. These raise the questions of whether high reversibility is necessarily accompanied by small work and strain, and whether high work and strain is necessarily diminished at small scale. Here we conclusively demonstrate that these are not true by showing that Au_(30)Cu_(25)Zn_(45) pillars exhibit 12 MJ m^(−3) work and 3.5% superelastic strain even after 100,0...
Shape memory materials are a class of smart materials able to convert heat into mechanical strain (o...
Shape memory alloys (SMAs) are a class of metallic alloys with the ability to recover large mechanic...
Shape memory alloys (SMA) undergo reversible martensitic transformation in response to changes in te...
Shape memory alloys that produce and recover from large deformation driven by martensitic transforma...
Nanotechnology has paved the way for the research and development of new classes of materials and ho...
Mechanical damping applications could benefit from the large hysteresis, large pseudoelastic strain ...
Co-Ni-Ga shape memory alloys attracted scientific attention as promising candidate materials for dam...
Shape-memory alloys (SMAs) are the most stretchable metallic materials thanks to their superelastic ...
Shape memory alloys that produce and recover from large deformation driven by martensitic transforma...
The stress-induced martensitic transformation of Cu50Zr50 at. % shape memory alloy was tuned through...
Shape-memory alloys (SMAs) are the most stretchable metallic materials thanks to their superelastic ...
This research focuses on the characterization of the structure and mechanical behavior of metal nano...
We demonstrate a novel materials design approach to achieve unprecedented properties by utilizing na...
Results are presented reporting on the martensite domain variant selection and stress-induced marten...
Micro-pillars oriented in austenite along [100], [110], and [111] crystallographic directions were f...
Shape memory materials are a class of smart materials able to convert heat into mechanical strain (o...
Shape memory alloys (SMAs) are a class of metallic alloys with the ability to recover large mechanic...
Shape memory alloys (SMA) undergo reversible martensitic transformation in response to changes in te...
Shape memory alloys that produce and recover from large deformation driven by martensitic transforma...
Nanotechnology has paved the way for the research and development of new classes of materials and ho...
Mechanical damping applications could benefit from the large hysteresis, large pseudoelastic strain ...
Co-Ni-Ga shape memory alloys attracted scientific attention as promising candidate materials for dam...
Shape-memory alloys (SMAs) are the most stretchable metallic materials thanks to their superelastic ...
Shape memory alloys that produce and recover from large deformation driven by martensitic transforma...
The stress-induced martensitic transformation of Cu50Zr50 at. % shape memory alloy was tuned through...
Shape-memory alloys (SMAs) are the most stretchable metallic materials thanks to their superelastic ...
This research focuses on the characterization of the structure and mechanical behavior of metal nano...
We demonstrate a novel materials design approach to achieve unprecedented properties by utilizing na...
Results are presented reporting on the martensite domain variant selection and stress-induced marten...
Micro-pillars oriented in austenite along [100], [110], and [111] crystallographic directions were f...
Shape memory materials are a class of smart materials able to convert heat into mechanical strain (o...
Shape memory alloys (SMAs) are a class of metallic alloys with the ability to recover large mechanic...
Shape memory alloys (SMA) undergo reversible martensitic transformation in response to changes in te...