Javascript must be enabled to continue!
Geometrical nonlinear characteristics of functionally graded structure using functionally graded piezoelectric materials
View through CrossRef
In the present article, a parametric study on the geometric nonlinear static and dynamic analysis of thin functionally graded structure sandwiched between functionally graded piezoelectric materials is presented. The properties of functionally graded material are graded in the thickness direction according to a power law distribution and variation of electric field is assumed to be quadratic across the thickness of functionally graded piezoelectric materials layers. The structure is modeled using finite element modeling. The finite element formulation is derived using Hamilton’s principle using full geometric nonlinearities. This is done by using Green-Lagrangian strains instead of von-Karman strains which are usually used by most researchers while conducting similar studies. The ensued non-linear algebraic equations are then solved using the modified Newton–Raphson method. A fuzzy logic controller is used to attenuate the vibration occurring in the host structure.
Title: Geometrical nonlinear characteristics of functionally graded structure using functionally graded piezoelectric materials
Description:
In the present article, a parametric study on the geometric nonlinear static and dynamic analysis of thin functionally graded structure sandwiched between functionally graded piezoelectric materials is presented.
The properties of functionally graded material are graded in the thickness direction according to a power law distribution and variation of electric field is assumed to be quadratic across the thickness of functionally graded piezoelectric materials layers.
The structure is modeled using finite element modeling.
The finite element formulation is derived using Hamilton’s principle using full geometric nonlinearities.
This is done by using Green-Lagrangian strains instead of von-Karman strains which are usually used by most researchers while conducting similar studies.
The ensued non-linear algebraic equations are then solved using the modified Newton–Raphson method.
A fuzzy logic controller is used to attenuate the vibration occurring in the host structure.
Related Results
Review of high temperature piezoelectric materials, devices, and applications
Review of high temperature piezoelectric materials, devices, and applications
Piezoelectric functional materials have been extensively studied and employed in numerous devices. With the rapid development of modern industries, such as power plants, aerospace,...
Nonlinear Vibration of a Functionally Graded Nanobeam Based on the Nonlocal Strain Gradient Theory considering Thickness Effect
Nonlinear Vibration of a Functionally Graded Nanobeam Based on the Nonlocal Strain Gradient Theory considering Thickness Effect
In this work, a nonlocal strain gradient beam model considering the thickness effect is developed to study the nonlinear vibration response of a functionally graded nanobeam. The g...
A Constitutive Model for Piezoelectric Paint with Mixed Connectivity
A Constitutive Model for Piezoelectric Paint with Mixed Connectivity
This article presents a constitutive model for piezoelectric paint that addresses its special characteristics such as mixed connectivity and air void content. Piezoelectric paint i...
Performance analysis of the functionally graded flexoelectric-piezoelectric energy harvesting
Performance analysis of the functionally graded flexoelectric-piezoelectric energy harvesting
In the present paper, the output performances of the functionally graded flexoelectric-piezoelectric (FGFP) energy harvesting subjected to an external harmonic excitation, consider...
Experimental analysis of epoxy-based functionally graded composite materials
Experimental analysis of epoxy-based functionally graded composite materials
Functionally graded materials (FGMs) are crucial in the mechanical and aerospace industries for improving material quality by combining distinct qualities to create composite subst...
The Effect of Piezoelectric Shape on Energy Harvesting Shoes
The Effect of Piezoelectric Shape on Energy Harvesting Shoes
Piezoelectric elements are commonly installed in shoe sole to make use of the piezoelectric effect due to the vibration generated by the human motion. Piezoelectric shoe is a great...
Modelling of the Coupled Beam-Piezoelectric Material With Hysteresis Non-Linerity Effect
Modelling of the Coupled Beam-Piezoelectric Material With Hysteresis Non-Linerity Effect
Hysteresis is one of the non-linearity characteristics of the piezoelectric material. This characteristic is important to be characterized since it can affect the performance of th...
Design and test of liquid sloshing piezoelectric energy harvester
Design and test of liquid sloshing piezoelectric energy harvester
The energy harvester based on the piezoelectric effect can convert the vibration energy in the environment into electricity to power the network nodes. In order to broaden the effe...

