The integration of shape memory alloys (SMAs) into textile-reinforced composites produces a class of smart materials whose shape can be actively influenced. In this paper, Ni-Ti SMA wires are inserted during the weaving of a glass fiber reinforcement textile. This ‘‘active’’ reinforcement is then combined with an elastomeric matrix to produce a highly flexible composite sheet, which maintains high rigidity in the longitudinal direction. By activating the SMAs, high deflection ratios of up to 35% (relative to the component’s length) are achieved. To adjust the composite’s deflection to defined values, a closed-loop control is set up to adjust the current flow through the SMA wires. A control algorithm is designed and evaluated for several te...
Fiber-reinforced composites are currently being used in a wide range of lightweight constructions. F...
Shape memory materials have been known for many years to possess the unique ability of memorising th...
A new class of modern smart materials such as piezoelectric polymers and ceramics, electrorheologica...
The integration of shape memory alloys (SMAs) into textile-reinforced composites produces a class of...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
Soft robots have been used in a wide range of applications from robotic and mechanical engineering t...
Soft robots have been used in a wide range of applications from robotic and mechanical engineering t...
The manufacturing route and resulting properties of adaptive composites are presented in the second ...
For fiber-reinforced plastic composites, fiber-matrix adhesion is a significant aspect of composite ...
Fiber-reinforced composites are currently being used in a wide range of lightweight constructions. F...
This article reviews the current state-of-the-art in the applications of shape memory alloy (SMA) wi...
Shape memory alloys (SMA) offer the possibility of developing a new type of composites with embedded...
Shape memory alloys (SMA) offer the possibility of developing a new type of composites with embedded...
Fiber-reinforced composites are currently being used in a wide range of lightweight constructions. F...
Shape memory materials have been known for many years to possess the unique ability of memorising th...
A new class of modern smart materials such as piezoelectric polymers and ceramics, electrorheologica...
The integration of shape memory alloys (SMAs) into textile-reinforced composites produces a class of...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
Soft robots have been used in a wide range of applications from robotic and mechanical engineering t...
Soft robots have been used in a wide range of applications from robotic and mechanical engineering t...
The manufacturing route and resulting properties of adaptive composites are presented in the second ...
For fiber-reinforced plastic composites, fiber-matrix adhesion is a significant aspect of composite ...
Fiber-reinforced composites are currently being used in a wide range of lightweight constructions. F...
This article reviews the current state-of-the-art in the applications of shape memory alloy (SMA) wi...
Shape memory alloys (SMA) offer the possibility of developing a new type of composites with embedded...
Shape memory alloys (SMA) offer the possibility of developing a new type of composites with embedded...
Fiber-reinforced composites are currently being used in a wide range of lightweight constructions. F...
Shape memory materials have been known for many years to possess the unique ability of memorising th...
A new class of modern smart materials such as piezoelectric polymers and ceramics, electrorheologica...