Dynamics of Multilayered Composite Plates With Shape Memory Alloy Wires
Author:
Zak A. J.1, Cartmell M. P.1, Ostachowicz W.2
Affiliation:
1. Department of Mechanical Engineering, University of Glasgow, James Watt Building, Glasgow G12 8QQ, Scotland 2. Institute of Fluid-Flow Machinery PASci, Gdansk, ul. Fiszera 14, 80-952, Poland
Abstract
In this paper certain aspects of the dynamic behavior of a multilayered, composite plate with shape memory alloys (SMA) wires have been investigated. The influence of parameters such as the orientation and location of SMA wires, the orientation and relative volume fraction of reinforcing fibers, the thickness-to-length and length-to-width ratios, and different boundary conditions, on changes in the critical load, the natural frequencies and the modes of vibrations of the plate have all been studied and discussed in the paper. The use of two different techniques, generally known in the literature as the active property tuning and active strain energy tuning methods, has also been investigated. The results presented in this paper have been obtained by the use of the finite element method and a new finite element formulated for multilayered composite plates has been applied for this purpose.
Publisher
ASME International
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics
Reference23 articles.
1. Otsuka, K., and Wayman, C. M., 1998, Shape Memory Materials, Cambridge University Press, Cambridge, UK. 2. Ford, D. S., and White, S. R., 1996, “Thermomechanical Behavior of 55Ni45Ti Nitinol,” Acta Mater., 44, pp. 2295–2307. 3. Piedboeuf, M. C., Gauvin, R., and Thomas, M., 1998, “Damping Behavior of Shape Memory Alloys: Strain Amplitude, Frequency and Temperature Effects,” J. Sound Vib., 214, pp. 885–901. 4. Gandhi, F., and Wolons, D., 1999, “Characterization of the Pseudoelastic Damping Behavior of Shape Memory Alloy Wires Using Complex Moduls,” J. Smart Mat. Struct., 8, pp. 49–56. 5. Rogers, C. A., Baker, D. K., and Jaeger, C. A., 1989, “Introduction to Smart Materials and Structures,” Smart Materials, Structures, and Mathematical Issues, Technomic, Lancaster, PA.
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