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Aero-thermo-mechanical characteristics of imperfect shape memory alloy hybrid composite panels

Authors
Ibrahim, Hesham HamedYoo, Hong HeeLee, Kwan-Soo
Issue Date
Aug-2009
Publisher
ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
Citation
JOURNAL OF SOUND AND VIBRATION, v.325, no.3, pp.583 - 596
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF SOUND AND VIBRATION
Volume
325
Number
3
Start Page
583
End Page
596
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/176451
DOI
10.1016/j.jsv.2009.03.027
ISSN
0022-460X
Abstract
A nonlinear finite element model is provided to predict the static aero-thermal deflection and the vibration behavior of geometrically imperfect shape memory alloy hybrid composite panels under the combined effect of thermal and aerodynamic loads. The nonlinear governing equations are obtained using Marguerre curved plate theory and the principle of virtual work taking into account the temperature-dependence of material properties. The effect of large deflection is included in the formulation through the von Karman nonlinear strain-displacement relations. The thermal load is assumed to be a steady-state constant-temperature distribution, whereas the aerodynamic pressure is modeled using the quasi-steady first-order piston theory. The Newton-Raphson iteration method is employed to obtain the nonlinear aero-thermal deflections, while an eigenvalue problem is solved at each temperature step and static aerodynamic load to predict the free vibration frequencies about the deflected equilibrium position. Finally, the nonlinear deflection and free vibration characteristics of a composite panel are presented, illustrating the effects of geometric imperfection, temperature rise, aerodynamic pressure, boundary conditions and shape memory alloy fiber embeddings on the panel response.
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