A Novel SMA-based Concept for Airfoil Structural Morphing
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L. Lecce | R. Pecora | S. Barbarino | A. Concilio | S. Ameduri | E. Calvi | L. Lecce | S. Barbarino | E. Calvi | Silvestro Barbarino | Erika Calvi
[1] Antonio Concilio,et al. Airfoil Morphing Architecture Based on Shape Memory Alloys , 2008 .
[2] Rosario Pecora,et al. Wing chamber control architectures based on SMA: numerical investigations , 2007, International Conference on Smart Materials and Nanotechnology in Engineering.
[3] Johannes Schweiger,et al. MDO CONCEPTS FOR AN EUROPEAN RESEARCH PROJECT ON ACTIVE AEROELASTIC AIRCRAFT , 2002 .
[4] T. Tadaki,et al. Shape Memory Alloys , 2002 .
[5] Terrence A. Weisshaar,et al. Evaluating the Impact of Morphing Technologies on Aircraft Performance , 2002 .
[6] Inderjit Chopra,et al. Review of State of Art of Smart Structures and Integrated Systems , 2002 .
[7] E Stanewsky,et al. Adaptive wing and flow control technology , 2001 .
[8] A. V. Srinivasan,et al. Smart Structures: Analysis and Design , 2000 .
[9] Holger Hanselka,et al. Design aspects of the adaptive wing — the elastic trailing edge and the local spoiler bump , 2000, The Aeronautical Journal (1968).
[10] J. J. Spillman,et al. The use of variable camber to reduce drag, weight and costs of transport aircraft , 1992, The Aeronautical Journal (1968).
[11] Craig A. Rogers,et al. One-Dimensional Thermomechanical Constitutive Relations for Shape Memory Materials , 1990 .
[12] K. Tanaka. A THERMOMECHANICAL SKETCH OF SHAPE MEMORY EFFECT: ONE-DIMENSIONAL TENSILE BEHAVIOR , 1986 .
[13] J. V. Gilfrich,et al. Effect of Low‐Temperature Phase Changes on the Mechanical Properties of Alloys near Composition TiNi , 1963 .