Fabrication and Thermo-Mechanical Characterization of a Shape Memory Alloy Hybrid Composite

Author:

Faiella Gabriella1,Antonucci Vincenza2,Daghia Federica3,Fascia Samuele4,Giordano Michele5

Affiliation:

1. Federico , University of Naples, P.le Tecchio 80 80125 Naples, Italy, Institute for Composite and Biomedical Materials (IMCB-CNR), P.le Tecchio 80 80125, Naples, Italy

2. Institute for Composite and Biomedical Materials (IMCB-CNR), P.le Tecchio 80 80125, Naples, Italy,

3. LMT-Cachan (ENS Cachan, CNRS-UMR8535, UPMC, PRES UniverSud Paris), 61 av. du Président Wilson, 94235 Cachan CEDEX, France

4. Federico , University of Naples, P.le Tecchio 80 80125 Naples, Italy

5. Institute for Composite and Biomedical Materials (IMCB-CNR), P.le Tecchio 80 80125, Naples, Italy

Abstract

Shape memory alloy (SMA) elements embedded in a structure allow to control the structural properties, thanks to their coupled thermo-mechanical behavior. In this study, the manufacturing and the shape control abilities of glass fiber/polyester resin SMA hybrid composites (SMAHCs) were experimentally investigated. Mechanical and calorimetric characterizations of SMA were carried out and correlated to the thermo-mechanical behavior of the SMAHC. The SMAHC was manufactured by the Vacuum Infusion Process that uses dry fibers and liquid matrix for the composite production. A polyester resin having a curing temperature lower than the SMA Austenite transition temperature was chosen as matrix, so a blocking system for the SMA wires was not needed during the cure. The thermo-mechanical behavior of the SMAHC was investigated by monitoring the shape change of the plate during heating of the embedded wires. The results give some indications on the appropriate characterization and choice of materials for SMAHC manufacturing.

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Materials Science

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4. Active Control of Nitinol-Reinforced Composite Beam

5. Theory and comparison of the effect of composite and shape memory alloy stiffeners on stability of composite shells and plates

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