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Mechanical and Vibration Characteristics of Laminated Composite Plates Embedding Shape Memory Alloy Superelastic Wires
Authors:Silvio Pappadà  Per Gren  Kourosh Tatar  Tord Gustafson  Rocco Rametta  Ettore Rossini  Alfonso Maffezzoli
Affiliation:1. Departments of Materials and Structures Engineering, Technologies and Processes Area, Consorzio CETMA, Cittadella della Ricerca, SS7-Km706+300, 72100, Brindisi, Italy
2. Division of Experimental Mechanics, Lulea University of Technology, SE-97187, Lule?, Sweden
3. APC Composite, Karlsviksvagen 81, S-97594, Lule?, Sweden
4. Extreme Materials S.r.l., Via dei Cipressi 2, Costa Masnaga, LC, Italy
5. Department of Engineering for Innovation, University of Salento, Via per Monteroni, Edificio “La Stecca”, 73100, Lecce, Italy
Abstract:Currently, there is a great interest in the study of shape memory alloy (SMA) composites, since SMA wires with a small diameter have become commercially available. Many potential uses have been found for SMA composites in shape control, vibration control, and for the realization of structures with improved damage tolerance. In this work, two types of SMA-hybridized composites are presented for investigating the mechanical and vibration characteristics. The first one contains unidirectional superelastic SMA wires, while the other has been realized with embedded knitted SMA layers. The samples from these laminates have been tested according to “Charpy method” (ASTM D256) and static flexural test method (ASTM D790) to evaluate the influence of the integration of thin superelastic SMA wires on the impact behavior and the mechanical properties of the hybrid composites. Moreover, since the SMA wires are expected to give damping capacity, by measuring the vibration mode of a clamped cantilever using laser vibrometry, the influence of both SMA arrangements on the vibration characteristics has been investigated. Finally, further tests have been carried out on composite panels realized by embedding unidirectional steel wires to distinguish the influence of the martensitic transformation from the pure introduction of a metallic wire into the polymeric matrix.
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