Title : ( Nonlocal strain gradient-based nonlinear vibration analysis of nonlinear FG three-phase HJCNT/MWCNT/epoxy composite microbeam resonators using a modified micromechanical model )
Authors: , Seyed Mahmoud Hosseini ,Access to full-text not allowed by authors
Abstract
This paper aims to study nonlinear dynamic behavior of functionally graded (FG) three-phase composite microbeam resonators made of an epoxy matrix and two reinforcements namely multiwalled carbon nanotubes (MWCNTs) and hetero-junction carbon nanotubes (HJCNTs). The effective mechanical properties of the composite microbeam are obtained using the modified Halpin-Tsai micromechanical model. The microbeam surrounding medium is simulated using a two-parameter elastic foundation. The von-Karman’s geometric nonlinearity relations are incorporated and the equations of motion are derived based on the nonlocal strain gradient Euler–Bernoulli beam model. A new closed-form analytical solution is obtained using the homotopy perturbation method. The effects of vibration amplitude, nanofiber volume fraction, nanofiber distribution pattern, small-scale parameters and the foundation parameters on the nonlinear frequency and deflection of the FG threephase composite microbeams are studied in detail. The findings of the paper are valuable for researchers in the field of microbeam resonators.
Keywords
, nonlinear vibrations, microbeam, nonlocal strain gradient theory, three-phase nanocomposite, Homotopy perturbation method, analytical solution@article{paperid:1099359,
author = {, and Hosseini, Seyed Mahmoud},
title = {Nonlocal strain gradient-based nonlinear vibration analysis of nonlinear FG three-phase HJCNT/MWCNT/epoxy composite microbeam resonators using a modified micromechanical model},
journal = {Physica Scripta},
year = {2024},
volume = {99},
number = {8},
month = {August},
issn = {0031-8949},
pages = {85208--85238},
numpages = {30},
keywords = {nonlinear vibrations; microbeam; nonlocal strain gradient theory; three-phase nanocomposite; Homotopy perturbation method; analytical solution},
}
%0 Journal Article
%T Nonlocal strain gradient-based nonlinear vibration analysis of nonlinear FG three-phase HJCNT/MWCNT/epoxy composite microbeam resonators using a modified micromechanical model
%A ,
%A Hosseini, Seyed Mahmoud
%J Physica Scripta
%@ 0031-8949
%D 2024