Effects of adding carbon nanofibers on the reduction of matrix cracking in laminated composites: Experimental and analytical approaches

The main purpose of the present study is to investigate the effect of adding carbon nanofibers (CNFs) in fibrous polymeric composites on the reduction of matrix cracking. A tensile testing machine was used to apply five loading steps and induce different crack densities in [02/906]s composite specim...

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Main Authors: H. Ramezani, S. Kazemirad, M.M. Shokrieh, A. Mardanshahi
Format: Article
Language:English
Published: Elsevier 2021-02-01
Series:Polymer Testing
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0142941820322170
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spelling doaj-0e4d9499c113444ea1da1d821d8712b32021-03-18T04:31:28ZengElsevierPolymer Testing0142-94182021-02-0194106988Effects of adding carbon nanofibers on the reduction of matrix cracking in laminated composites: Experimental and analytical approachesH. Ramezani0S. Kazemirad1M.M. Shokrieh2A. Mardanshahi3Composites Research Laboratory, Center of Excellence in Experimental Solid Mechanics and Dynamics, School of Mechanical Engineering, Iran University of Science and Technology, Tehran, 16846-13114, IranSchool of Mechanical Engineering, Iran University of Science and Technology, Tehran, 16846-13114, IranComposites Research Laboratory, Center of Excellence in Experimental Solid Mechanics and Dynamics, School of Mechanical Engineering, Iran University of Science and Technology, Tehran, 16846-13114, Iran; Corresponding author.Composites Research Laboratory, Center of Excellence in Experimental Solid Mechanics and Dynamics, School of Mechanical Engineering, Iran University of Science and Technology, Tehran, 16846-13114, IranThe main purpose of the present study is to investigate the effect of adding carbon nanofibers (CNFs) in fibrous polymeric composites on the reduction of matrix cracking. A tensile testing machine was used to apply five loading steps and induce different crack densities in [02/906]s composite specimens with and without CNF fillers. After each loading step, the elastic modulus of specimens was measured. The crack density of damaged specimens was also measured by an optical microscope after each loading step. The Lamb wave propagation method was used to assess the elastic modulus of specimens at different crack densities. It was demonstrated that the addition of CNF fillers into the composite specimens resulted in lower crack densities and less stiffness reduction at certain applied stress levels. Moreover, Hashin and Andersons et al. micromechanical models were assessed by the experimental results for the analysis of matrix cracking in cross-ply laminated composites. For composite specimens with and without CNFs, the stiffness reduction at different crack densities was in good agreement with the predictions of the Hashin model, and the induced crack density at each applied loading step was in good agreement with the predictions of the Andersons et al. model.http://www.sciencedirect.com/science/article/pii/S0142941820322170Polymeric compositesCarbon nanofiberMatrix crackingLamb waveElastic propertiesMicromechanical models
collection DOAJ
language English
format Article
sources DOAJ
author H. Ramezani
S. Kazemirad
M.M. Shokrieh
A. Mardanshahi
spellingShingle H. Ramezani
S. Kazemirad
M.M. Shokrieh
A. Mardanshahi
Effects of adding carbon nanofibers on the reduction of matrix cracking in laminated composites: Experimental and analytical approaches
Polymer Testing
Polymeric composites
Carbon nanofiber
Matrix cracking
Lamb wave
Elastic properties
Micromechanical models
author_facet H. Ramezani
S. Kazemirad
M.M. Shokrieh
A. Mardanshahi
author_sort H. Ramezani
title Effects of adding carbon nanofibers on the reduction of matrix cracking in laminated composites: Experimental and analytical approaches
title_short Effects of adding carbon nanofibers on the reduction of matrix cracking in laminated composites: Experimental and analytical approaches
title_full Effects of adding carbon nanofibers on the reduction of matrix cracking in laminated composites: Experimental and analytical approaches
title_fullStr Effects of adding carbon nanofibers on the reduction of matrix cracking in laminated composites: Experimental and analytical approaches
title_full_unstemmed Effects of adding carbon nanofibers on the reduction of matrix cracking in laminated composites: Experimental and analytical approaches
title_sort effects of adding carbon nanofibers on the reduction of matrix cracking in laminated composites: experimental and analytical approaches
publisher Elsevier
series Polymer Testing
issn 0142-9418
publishDate 2021-02-01
description The main purpose of the present study is to investigate the effect of adding carbon nanofibers (CNFs) in fibrous polymeric composites on the reduction of matrix cracking. A tensile testing machine was used to apply five loading steps and induce different crack densities in [02/906]s composite specimens with and without CNF fillers. After each loading step, the elastic modulus of specimens was measured. The crack density of damaged specimens was also measured by an optical microscope after each loading step. The Lamb wave propagation method was used to assess the elastic modulus of specimens at different crack densities. It was demonstrated that the addition of CNF fillers into the composite specimens resulted in lower crack densities and less stiffness reduction at certain applied stress levels. Moreover, Hashin and Andersons et al. micromechanical models were assessed by the experimental results for the analysis of matrix cracking in cross-ply laminated composites. For composite specimens with and without CNFs, the stiffness reduction at different crack densities was in good agreement with the predictions of the Hashin model, and the induced crack density at each applied loading step was in good agreement with the predictions of the Andersons et al. model.
topic Polymeric composites
Carbon nanofiber
Matrix cracking
Lamb wave
Elastic properties
Micromechanical models
url http://www.sciencedirect.com/science/article/pii/S0142941820322170
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AT mmshokrieh effectsofaddingcarbonnanofibersonthereductionofmatrixcrackinginlaminatedcompositesexperimentalandanalyticalapproaches
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