The asymptotic homogenization models for smart composite materials are derived and effective elastic, actuation, thermal expansion and hygroscopic expansion coefficients for smart structures are obtained. The actuation coefficients characterize the intrinsic transducer nature of active smart materials that can be used to induce strains and stresses in a coordinated fashion. Examples of such actuators employed with smart composite material systems are derived from piezoelectric, magnetostrictive, and some other materials. The pertinent mathematical framework is that of asymptotic homogenization. The objective is to transform a general anisotropic composite material with a regular array of reinforcements and/or actuators into a simpler one th...
The design of composite materials requires microstructurally based computational approaches to optim...
The design of composite materials requires microstructurally based computational approaches to optim...
The design of composite materials requires microstructurally based computational approaches to optim...
Asymptotic homogenization models for prismatic smart composite structures are derived and the effect...
A comprehensive micromechanical model for smart 3D composite structures reinforced with a periodic g...
A comprehensive micromechanical model for smart 3D composite structures reinforced with a periodic g...
A new comprehensive micromechanical model for the analysis of the dynamic problem of a smart composi...
We develop in this paper a comprehensive micromechanical model for the analysis of thin smart compos...
Two micromechanical models for 3D smart composite with embedded periodic or nearly periodic network ...
This work focuses on the modeling and control of smart composites, where smart composites can be loo...
This work focuses on the modeling and control of smart composites, where smart composites can be loo...
A new smart composite laminate model using the coupled thermal-piezoelectric-mechanical (t-p-m) theo...
Piezoelectric materials are capable of altering a structure\u27s response to external stimuli throu...
A comprehensive micromechanical model for the analysis of a smart composite piezo-magneto-thermoelas...
Smart actuators, made of smart materials, are becoming more attractive in many applications because ...
The design of composite materials requires microstructurally based computational approaches to optim...
The design of composite materials requires microstructurally based computational approaches to optim...
The design of composite materials requires microstructurally based computational approaches to optim...
Asymptotic homogenization models for prismatic smart composite structures are derived and the effect...
A comprehensive micromechanical model for smart 3D composite structures reinforced with a periodic g...
A comprehensive micromechanical model for smart 3D composite structures reinforced with a periodic g...
A new comprehensive micromechanical model for the analysis of the dynamic problem of a smart composi...
We develop in this paper a comprehensive micromechanical model for the analysis of thin smart compos...
Two micromechanical models for 3D smart composite with embedded periodic or nearly periodic network ...
This work focuses on the modeling and control of smart composites, where smart composites can be loo...
This work focuses on the modeling and control of smart composites, where smart composites can be loo...
A new smart composite laminate model using the coupled thermal-piezoelectric-mechanical (t-p-m) theo...
Piezoelectric materials are capable of altering a structure\u27s response to external stimuli throu...
A comprehensive micromechanical model for the analysis of a smart composite piezo-magneto-thermoelas...
Smart actuators, made of smart materials, are becoming more attractive in many applications because ...
The design of composite materials requires microstructurally based computational approaches to optim...
The design of composite materials requires microstructurally based computational approaches to optim...
The design of composite materials requires microstructurally based computational approaches to optim...