Temperature and time dependence of the electro-mechanical properties of flexible active fiber composites

2016 ◽  
Vol 25 (4) ◽  
pp. 045002 ◽  
Author(s):  
H Ben Atitallah ◽  
Z Ounaies ◽  
A Muliana
Author(s):  
Davood Askari ◽  
Mehrdad N. Ghasemi Nejhad

Active fiber composites are among the many other components used in intelligent and smart composite structures which undergo mechanical deformation upon the application of external loads or electric fields. This work presents an analytical approach for derivations of exact solutions for the effective axial mechanical properties of active fiber composites with circular cross-sections, and while the properties of the constituent materials are considered to be generally orthotropic. First, exact analytical solutions of the effective longitudinal Young’s modulus and Poisson’s ratio are obtained for a three-phase composite cylindrical model composed of orthotropic materials. Next, Finite element analysis, as an alternative approach, is performed to numerically determine the effective axial properties of an identical three-phase composite cylinder. Finally, effective material properties obtained from analytical and finite element methods are compared to verify the derived analytical solutions. Excellent agreements are achieved between the results obtained from both techniques validating the exact analytical solutions.


Aerospace ◽  
2005 ◽  
Author(s):  
Mehrdad N. Ghasemi Nejhad ◽  
Davood Askari

An analytical micromechanics approach is presented to model the effective longitudinal mechanical properties of Metal-Core Piezoelectric Fibers (MPF). The model assumes general orthotropic material properties for the piezoelectric as well as the core material. Next, the general orthotropic solution is reduced to transversely isotropic for the piezoelectric fiber and isotropic for the metal-core. This MPF system is also modeled using finite element analysis (FEA) and the results from the analytical solution and FEA are compared for verification purpose. Next, the Metal-Core Piezoelectric Fiber (MPF) is embedded inside a metal or a polymer and the resulting longitudinal mechanical properties of these Active Fiber Composite (AFC) systems are given analytically.


Aerospace ◽  
2006 ◽  
Author(s):  
Davood Askari ◽  
Mehrdad N. Ghasemi Nejhad

This work presents analytical solutions for the effective axial mechanical properties of the active fiber composites with different geometries, e.g., circular and rectangular cross-sections, and while the properties of the constituent materials are considered to be generally orthotropic. Analytical exact solutions of the effective longitudinal Young's moduli and major Poisson's ratios are obtained for two different geometries of a 2-phase composite model composed of orthotropic materials. Finite element analyses (FEAs) are also performed to verify the obtained analytical exact solutions. Excellent agreements are achieved between the results obtained from both techniques. Finally, the effective mechanical properties calculated from analytical solutions for the modeled geometrical configurations are compared.


2004 ◽  
Author(s):  
Alberto Belloli ◽  
Benedetto Castelli ◽  
Xavier Kornmann ◽  
Christian Huber ◽  
Paolo Ermanni

2011 ◽  
Author(s):  
Hassene Ben Atitallah ◽  
Anastasia Muliana ◽  
Zoubeida Ounaies

2003 ◽  
Author(s):  
Richard L. Gentilman ◽  
Kelley McNeal ◽  
Gerald E. Schmidt ◽  
Alessandro E. Pizzochero ◽  
George A. Rossetti, Jr.

2006 ◽  
pp. 496-503
Author(s):  
Nesbitt W. Hagood ◽  
Mauro J. Atalla ◽  
Benon Z. Janos ◽  
Mads Schmidt ◽  
Viresh K. Wickramasinghe

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