Shape memory alloys (SMAs) belong to a class of shape memory materials (SMMs), which have the ability to 'memorise' or retain their previous form when subjected to certain stimulus such as thermomechanical or magnetic variations. SMAs have drawn significant attention and interest in recent years in a broad range of commercial applications, due to their unique and superior properties; this commercial development has been supported by fundamental and applied research studies. This work describes the attributes of SMAs that make them ideally suited to actuators in various applications, and addresses their associated limitations to clarify the design challenges faced by SMA developers. This work provides a timely review of recent SMA research a...
This chapter emphasizes the importance of a mechatronic approach to the design of soft robots. When ...
This chapter emphasizes the importance of a mechatronic approach to the design of soft robots. When ...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
Shape memory alloys (SMAs) belong to a class of smart materials with the ability to memorize or reta...
Shape memory alloys (SMAs) belong to a class of smart materials with the ability to memorize or reta...
Shape Memory Alloys are well known and established materials in medical engineering. In recent years...
Shape memory alloy (SMA) actuators have drawn much attention and interest due to their unique and su...
Recent research and development in the area of shape memory alloys (SMA) continues to yield novel an...
Shape memory alloys (SMAs) are a promising class of advanced materials with interesting properties, ...
Recent research and development in the area of shape memory alloys (SMA) continues to yield novel an...
Shape memory alloys (SMAs) have special property of the shape memory effect. After thermal treatment...
The aim of the thesis is to study and evaluate the usage of Shape Memory Alloys (SMA) as actuators f...
This chapter emphasizes the importance of a mechatronic approach to the design of soft robots. When ...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
This chapter emphasizes the importance of a mechatronic approach to the design of soft robots. When ...
This chapter emphasizes the importance of a mechatronic approach to the design of soft robots. When ...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
Shape memory alloys (SMAs) belong to a class of smart materials with the ability to memorize or reta...
Shape memory alloys (SMAs) belong to a class of smart materials with the ability to memorize or reta...
Shape Memory Alloys are well known and established materials in medical engineering. In recent years...
Shape memory alloy (SMA) actuators have drawn much attention and interest due to their unique and su...
Recent research and development in the area of shape memory alloys (SMA) continues to yield novel an...
Shape memory alloys (SMAs) are a promising class of advanced materials with interesting properties, ...
Recent research and development in the area of shape memory alloys (SMA) continues to yield novel an...
Shape memory alloys (SMAs) have special property of the shape memory effect. After thermal treatment...
The aim of the thesis is to study and evaluate the usage of Shape Memory Alloys (SMA) as actuators f...
This chapter emphasizes the importance of a mechatronic approach to the design of soft robots. When ...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
This chapter emphasizes the importance of a mechatronic approach to the design of soft robots. When ...
This chapter emphasizes the importance of a mechatronic approach to the design of soft robots. When ...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...