Shape Memory Alloys are well known and established materials in medical engineering. In recent years their importance also increased considering industrial applications. Especially the very high specific work load of the material and the simple working principle of SMA actuator systems possess them to be a suitable alternative to conventional drives. The benefits of the technology directly address the main demands on actuator technologies like miniaturisation, lightweight design and costs. Hence SMAs become further an alternative to substitute rare earth metals. In the paper we present the status quo of SMA technology. The shape memory effect as a basis for understanding the working principles of such actuators is described. Beyond that mec...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
A simplified procedure for the design of SMA(Shape Memory Alloy) actuators is presented. The inter-r...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
Shape memory alloys (SMAs) belong to a class of shape memory materials (SMMs), which have the abilit...
Shape memory alloy (SMA) actuators have drawn much attention and interest due to their unique and su...
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...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
Recent research and development in the area of shape memory alloys (SMA) continues to yield novel an...
This short monograph presents an analysis and design methodology for shape memory alloy (SMA) compon...
Applications of the superelastic effect of shape memory materials are well-established and understoo...
Recent research and development in the area of shape memory alloys (SMA) continues to yield novel an...
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...
Even it has been recognized that Shape Memory Alloys have a significant potential for deployment ac...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
A simplified procedure for the design of SMA(Shape Memory Alloy) actuators is presented. The inter-r...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
Shape memory alloys (SMAs) belong to a class of shape memory materials (SMMs), which have the abilit...
Shape memory alloy (SMA) actuators have drawn much attention and interest due to their unique and su...
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...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
Recent research and development in the area of shape memory alloys (SMA) continues to yield novel an...
This short monograph presents an analysis and design methodology for shape memory alloy (SMA) compon...
Applications of the superelastic effect of shape memory materials are well-established and understoo...
Recent research and development in the area of shape memory alloys (SMA) continues to yield novel an...
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...
Even it has been recognized that Shape Memory Alloys have a significant potential for deployment ac...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...
A simplified procedure for the design of SMA(Shape Memory Alloy) actuators is presented. The inter-r...
One important challenge of microsystems design is the implementation of miniaturized actuation princ...