In the last decades, the interest in Shape Memory Alloys (SMA) materials has been considerably increased due to their peculiar morphing capabilities, which can be relevant for many different engineering fields such as automotive and aerospace. Among the characteristics of shape memory alloys, their super-elastic behavior and their capability to recover an initial state, once a deformation has occurred, when subjected to a temperature above a predefined threshold, can be considered the most attractive ones. Possible applications of SMA includes, but are not limited to, switch actuators and morphing structures. In this work, the SMA materials super-elasticity effect and their capability to recover an initial state, due to the heating, are des...
Shape memory alloys (SMAs) are a group of alloys that exhibit a phenomenon known as the shape memory...
Research and development of smart alignment systems is currently being undertaken at the Smart Devi...
The main deformation mechanism of shape memory alloys (SMA) are related to martensitic transformatio...
In the last decades, the interest in Shape Memory Alloys (SMA) materials has been considerably incre...
Thanks to their peculiar morphing capabilities, Shape Memory Alloys (SMA) materials are being increa...
Problems in using shape memory alloys (SMA) in industrial applications are often caused by the fragm...
Shape Memory Alloys (SMAs) are a unique class of intermetallic alloys that can cyclically sustain la...
Research and development of smart alignment systems is currently being undertaken at the Smart Devic...
In order to realize a control system for Shape Memory Alloy (SMA) actuators, that ensure high displa...
The demand for shape memory alloy (SMA) actuators in high-technology applications is increasing; how...
Even it has been recognized that Shape Memory Alloys (SMA) have a significant potential for deployme...
With the increased emphasis on both reliability and functionality, shape memory alloys (SMAs) are fa...
The Müller-Achenbach-Seelecke model for shape memory alloys is able to address full thermomechanical...
Shape memory alloys (SMAs) are metallic materials, which have two main stable crystalline phases: au...
Shape Memory Alloys are a2 alloys exhdhting the Shape Memory Effect, I.e. if a spechex of these allo...
Shape memory alloys (SMAs) are a group of alloys that exhibit a phenomenon known as the shape memory...
Research and development of smart alignment systems is currently being undertaken at the Smart Devi...
The main deformation mechanism of shape memory alloys (SMA) are related to martensitic transformatio...
In the last decades, the interest in Shape Memory Alloys (SMA) materials has been considerably incre...
Thanks to their peculiar morphing capabilities, Shape Memory Alloys (SMA) materials are being increa...
Problems in using shape memory alloys (SMA) in industrial applications are often caused by the fragm...
Shape Memory Alloys (SMAs) are a unique class of intermetallic alloys that can cyclically sustain la...
Research and development of smart alignment systems is currently being undertaken at the Smart Devic...
In order to realize a control system for Shape Memory Alloy (SMA) actuators, that ensure high displa...
The demand for shape memory alloy (SMA) actuators in high-technology applications is increasing; how...
Even it has been recognized that Shape Memory Alloys (SMA) have a significant potential for deployme...
With the increased emphasis on both reliability and functionality, shape memory alloys (SMAs) are fa...
The Müller-Achenbach-Seelecke model for shape memory alloys is able to address full thermomechanical...
Shape memory alloys (SMAs) are metallic materials, which have two main stable crystalline phases: au...
Shape Memory Alloys are a2 alloys exhdhting the Shape Memory Effect, I.e. if a spechex of these allo...
Shape memory alloys (SMAs) are a group of alloys that exhibit a phenomenon known as the shape memory...
Research and development of smart alignment systems is currently being undertaken at the Smart Devi...
The main deformation mechanism of shape memory alloys (SMA) are related to martensitic transformatio...