In this article, an advanced laminated composite is developed, combining the high damping properties of shape memory alloy (SMA) with mechanical properties and light weight of a glass-fiber reinforced polymer. The composite is formed by stacking a glass-fiber reinforced epoxy core between two thin patterned strips of SMA alloy, and two further layers of fiber-glass reinforced epoxy. The bars of the laminated composite were assembled and cured in autoclave. The patterning was designed to enhance the interface adhesion between matrix and SMA inserts and optimally exploit the damping capacity of the SMA thin ribbons. The patterned ribbons of the SMA alloy were cut by means of a pulsed fiber laser source. Damping properties at different amplit...
Shape memory alloy have unique damping properties due to the internal damping of the martensitic pha...
Shape memory alloy have unique damping properties due to the internal damping of the martensitic pha...
Shape memory alloy have unique damping properties due to the internal damping of the martensitic pha...
In this article, an advanced laminated composite is developed, combining the high damping properties...
In this article, an advanced laminated composite is developed, combining the high damping properties...
In this article, an advanced laminated composite is developed, combining the high damping properties...
In this article, an advanced laminated composite is developed, combining the high damping properties...
In this article, an advanced laminated composite is developed, combining the high damping properties...
In this article, an advanced laminated composite is developed, combining the high damping properties...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloy have unique damping properties due to the internal damping of the martensitic pha...
Shape memory alloy have unique damping properties due to the internal damping of the martensitic pha...
Shape memory alloy have unique damping properties due to the internal damping of the martensitic pha...
In this article, an advanced laminated composite is developed, combining the high damping properties...
In this article, an advanced laminated composite is developed, combining the high damping properties...
In this article, an advanced laminated composite is developed, combining the high damping properties...
In this article, an advanced laminated composite is developed, combining the high damping properties...
In this article, an advanced laminated composite is developed, combining the high damping properties...
In this article, an advanced laminated composite is developed, combining the high damping properties...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloys (SMA) besides shape memory and superelastic properties, are characterised by sig...
Shape memory alloy have unique damping properties due to the internal damping of the martensitic pha...
Shape memory alloy have unique damping properties due to the internal damping of the martensitic pha...
Shape memory alloy have unique damping properties due to the internal damping of the martensitic pha...