Shape memory alloy hybrid composite plates are `intelligent' structures whose shape or stiffness is actively modified by embedded shape memory alloy fibers. In this work, the behavior of such structures is investigated numerically and experimentally. A finite element model which separately represents the host structure and the fibers in a two-dimensional setting is proposed as a simple tool to predict the structural behavior in stiffness and shape control. The shape control configuration is used to validate the model experimentally since it is the most sensitive to the choice of the geometrical and mechanical model parameters
A new class of modern smart materials such as piezoelectric polymers and ceramics, electrorheologica...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
Deformations and stresses in hybrid shape memory alloy plates subjected to low-velocity impact are c...
A finite element model is proposed for Shape Memory Alloys (SMA) reinforced composite thin plates. T...
A finite element model is proposed for Shape Memory Alloys (SMA) reinforced composite thin plates. T...
A finite element model is proposed for Shape Memory Alloys (SMA) reinforced composite thin plates. T...
SOMMARIO Si propone un modello agli elementi finiti per piastre sottili rinforzate con leghe a memor...
This paper presents a geometric non-linear finite element model of shape memory alloy composite plat...
An experimental study was carried out to investigate the shape control of plates via embedded shape ...
An experimental study was carried out to investigate the shape control of plates via embedded shape ...
An experimental study was carried out to investigate the shape control of plates via embedded shape ...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
A new class of modern smart materials such as piezoelectric polymers and ceramics, electrorheologica...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
none4An experimental study was carried out to investigate the shape control of plates via embedded s...
A new class of modern smart materials such as piezoelectric polymers and ceramics, electrorheologica...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
Deformations and stresses in hybrid shape memory alloy plates subjected to low-velocity impact are c...
A finite element model is proposed for Shape Memory Alloys (SMA) reinforced composite thin plates. T...
A finite element model is proposed for Shape Memory Alloys (SMA) reinforced composite thin plates. T...
A finite element model is proposed for Shape Memory Alloys (SMA) reinforced composite thin plates. T...
SOMMARIO Si propone un modello agli elementi finiti per piastre sottili rinforzate con leghe a memor...
This paper presents a geometric non-linear finite element model of shape memory alloy composite plat...
An experimental study was carried out to investigate the shape control of plates via embedded shape ...
An experimental study was carried out to investigate the shape control of plates via embedded shape ...
An experimental study was carried out to investigate the shape control of plates via embedded shape ...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
A new class of modern smart materials such as piezoelectric polymers and ceramics, electrorheologica...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
none4An experimental study was carried out to investigate the shape control of plates via embedded s...
A new class of modern smart materials such as piezoelectric polymers and ceramics, electrorheologica...
Imparting controllable flexural rigidity into a material system is one of the key motivations for th...
Deformations and stresses in hybrid shape memory alloy plates subjected to low-velocity impact are c...