Multiscale Analysis of Nanocomposites and Their Use in Structural Level Applications

abstract: This research focuses on the benefits of using nanocomposites in aerospace structural components to prevent or delay the onset of unique composite failure modes, such as delamination. Analytical, numerical, and experimental analyses were conducted to provide a comprehensive understanding o...

Full description

Bibliographic Details
Other Authors: Hasan, Zeaid (Author)
Format: Doctoral Thesis
Language:English
Published: 2014
Subjects:
CNT
Online Access:http://hdl.handle.net/2286/R.I.25901
id ndltd-asu.edu-item-25901
record_format oai_dc
spelling ndltd-asu.edu-item-259012018-06-22T03:05:26Z Multiscale Analysis of Nanocomposites and Their Use in Structural Level Applications abstract: This research focuses on the benefits of using nanocomposites in aerospace structural components to prevent or delay the onset of unique composite failure modes, such as delamination. Analytical, numerical, and experimental analyses were conducted to provide a comprehensive understanding of how carbon nanotubes (CNTs) can provide additional structural integrity when they are used in specific hot spots within a structure. A multiscale approach was implemented to determine the mechanical and thermal properties of the nanocomposites, which were used in detailed finite element models (FEMs) to analyze interlaminar failures in T and Hat section stringers. The delamination that first occurs between the tow filler and the bondline between the stringer and skin was of particular interest. Both locations are considered to be hot spots in such structural components, and failures tend to initiate from these areas. In this research, nanocomposite use was investigated as an alternative to traditional methods of suppressing delamination. The stringer was analyzed under different loading conditions and assuming different structural defects. Initial damage, defined as the first drop in the load displacement curve was considered to be a useful variable to compare the different behaviors in this study and was detected via the virtual crack closure technique (VCCT) implemented in the FE analysis. Experiments were conducted to test T section skin/stringer specimens under pull-off loading, replicating those used in composite panels as stiffeners. Two types of designs were considered: one using pure epoxy to fill the tow region and another that used nanocomposite with 5 wt. % CNTs. The response variable in the tests was the initial damage. Detailed analyses were conducted using FEMs to correlate with the experimental data. The correlation between both the experiment and model was satisfactory. Finally, the effects of thermal cure and temperature variation on nanocomposite structure behavior were studied, and both variables were determined to influence the nanocomposite structure performance. Dissertation/Thesis Hasan, Zeaid (Author) Chattopadhyay, Aditi (Advisor) Dai, Lenore (Committee member) Jiang, Hanqing (Committee member) Rajadas, John (Committee member) Liu, Yongming (Committee member) Arizona State University (Publisher) Nanotechnology Mechanics Aerospace engineering CNT multiscale nanocomposites stringers eng 235 pages Doctoral Dissertation Aerospace Engineering 2014 Doctoral Dissertation http://hdl.handle.net/2286/R.I.25901 http://rightsstatements.org/vocab/InC/1.0/ All Rights Reserved 2014
collection NDLTD
language English
format Doctoral Thesis
sources NDLTD
topic Nanotechnology
Mechanics
Aerospace engineering
CNT
multiscale
nanocomposites
stringers
spellingShingle Nanotechnology
Mechanics
Aerospace engineering
CNT
multiscale
nanocomposites
stringers
Multiscale Analysis of Nanocomposites and Their Use in Structural Level Applications
description abstract: This research focuses on the benefits of using nanocomposites in aerospace structural components to prevent or delay the onset of unique composite failure modes, such as delamination. Analytical, numerical, and experimental analyses were conducted to provide a comprehensive understanding of how carbon nanotubes (CNTs) can provide additional structural integrity when they are used in specific hot spots within a structure. A multiscale approach was implemented to determine the mechanical and thermal properties of the nanocomposites, which were used in detailed finite element models (FEMs) to analyze interlaminar failures in T and Hat section stringers. The delamination that first occurs between the tow filler and the bondline between the stringer and skin was of particular interest. Both locations are considered to be hot spots in such structural components, and failures tend to initiate from these areas. In this research, nanocomposite use was investigated as an alternative to traditional methods of suppressing delamination. The stringer was analyzed under different loading conditions and assuming different structural defects. Initial damage, defined as the first drop in the load displacement curve was considered to be a useful variable to compare the different behaviors in this study and was detected via the virtual crack closure technique (VCCT) implemented in the FE analysis. Experiments were conducted to test T section skin/stringer specimens under pull-off loading, replicating those used in composite panels as stiffeners. Two types of designs were considered: one using pure epoxy to fill the tow region and another that used nanocomposite with 5 wt. % CNTs. The response variable in the tests was the initial damage. Detailed analyses were conducted using FEMs to correlate with the experimental data. The correlation between both the experiment and model was satisfactory. Finally, the effects of thermal cure and temperature variation on nanocomposite structure behavior were studied, and both variables were determined to influence the nanocomposite structure performance. === Dissertation/Thesis === Doctoral Dissertation Aerospace Engineering 2014
author2 Hasan, Zeaid (Author)
author_facet Hasan, Zeaid (Author)
title Multiscale Analysis of Nanocomposites and Their Use in Structural Level Applications
title_short Multiscale Analysis of Nanocomposites and Their Use in Structural Level Applications
title_full Multiscale Analysis of Nanocomposites and Their Use in Structural Level Applications
title_fullStr Multiscale Analysis of Nanocomposites and Their Use in Structural Level Applications
title_full_unstemmed Multiscale Analysis of Nanocomposites and Their Use in Structural Level Applications
title_sort multiscale analysis of nanocomposites and their use in structural level applications
publishDate 2014
url http://hdl.handle.net/2286/R.I.25901
_version_ 1718700510583717888