Curved Nanotube Structures under Mechanical Loading

Configuration of carbon nanotube (CNT) has been the subject of research to perform theoretical development for analyzing nanocomposites. A new theoretical solution is developed to study curved nanotube structures subjected to mechanical loadings. A curved nanotube structure is considered. A nonlocal...

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Published inJournal of nanomaterials Vol. 2015; no. 2015; pp. 1 - 11
Main Authors Yazdani Sarvestani, Hamidreza, Naghashpour, Ali
Format Journal Article
LanguageEnglish
Published Cairo, Egypt Hindawi Publishing Corporation 01.01.2015
John Wiley & Sons, Inc
Subjects
Online AccessGet full text
ISSN1687-4110
1687-4129
DOI10.1155/2015/958138

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Abstract Configuration of carbon nanotube (CNT) has been the subject of research to perform theoretical development for analyzing nanocomposites. A new theoretical solution is developed to study curved nanotube structures subjected to mechanical loadings. A curved nanotube structure is considered. A nonlocal displacement-based solution is proposed by using a displacement approach of Toroidal Elasticity based on Eringen’s theory of nonlocal continuum mechanics. The governing equations of curved nanotube structures are developed in toroidal coordinate system. The method of successive approximation is used to discretize the displacement-based governing equations and find the general solution subjected to bending moment. The numerical results show that all displacement components increase with increasing the nonlocal parameter. The present theoretical study highlights the significance of the geometry and nonlocal parameter effects on mechanical behavior of nanotube structures.
AbstractList Configuration of carbon nanotube (CNT) has been the subject of research to perform theoretical development for analyzing nanocomposites. A new theoretical solution is developed to study curved nanotube structures subjected to mechanical loadings. A curved nanotube structure is considered. A nonlocal displacement-based solution is proposed by using a displacement approach of Toroidal Elasticity based on Eringen's theory of nonlocal continuum mechanics. The governing equations of curved nanotube structures are developed in toroidal coordinate system. The method of successive approximation is used to discretize the displacement-based governing equations and find the general solution subjected to bending moment. The numerical results show that all displacement components increase with increasing the nonlocal parameter. The present theoretical study highlights the significance of the geometry and nonlocal parameter effects on mechanical behavior of nanotube structures.
Author Yazdani Sarvestani, Hamidreza
Naghashpour, Ali
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Copyright Copyright © 2015 Hamidreza Yazdani Sarvestani and Ali Naghashpour.
Copyright © 2015 Hamidreza Yazdani Sarvestani and Ali Naghashpour. Hamidreza Yazdani Sarvestani et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
Copyright_xml – notice: Copyright © 2015 Hamidreza Yazdani Sarvestani and Ali Naghashpour.
– notice: Copyright © 2015 Hamidreza Yazdani Sarvestani and Ali Naghashpour. Hamidreza Yazdani Sarvestani et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
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StartPage 1
SubjectTerms Approximation
Bending moments
Carbon
Curved
Displacement
Elasticity
Mathematical analysis
Mathematical models
Mechanics
Nanocomposites
Nanomaterials
Nanostructure
Nanotubes
Propagation
Studies
Vibration
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Title Curved Nanotube Structures under Mechanical Loading
URI https://search.emarefa.net/detail/BIM-1069469
https://dx.doi.org/10.1155/2015/958138
https://www.proquest.com/docview/1698904113
https://www.proquest.com/docview/1730079631
Volume 2015
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