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Multiscale modeling of load transfer characteristics in crosslinked epoxy nanocomposites

Authors
Kim, ByungjoShin, HyunseongChoi, JoonmyungCho, Maenghyo
Issue Date
Oct-2022
Publisher
Informa UK Limited
Keywords
Crosslink conversion; load transfer; Molecular dynamics simulation; Multiscale modeling; Nanocomposites
Citation
Mechanics of Advanced Materials and Structures, v.29, no.26, pp 4768 - 4778
Pages
11
Indexed
SCIE
Journal Title
Mechanics of Advanced Materials and Structures
Volume
29
Number
26
Start Page
4768
End Page
4778
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/111205
DOI
10.1080/15376494.2021.1937759
ISSN
1537-6494
1537-6532
Abstract
A multiscale modeling approach is proposed to account for the interfacial load transfer characteristics of epoxy nanocomposites. The localized stress evolutions in nanocomposites are examined with molecular dynamics (MD) simulations: the particle phase stress and the regional stress evolution in matrix medium. Plus, detailed atomic motions in the matrix phase are thoroughly studied with respect to the crosslink conversion. The distinct structural features in a highly crosslinked system induce a cohesive motion under the mechanical loading, thereby playing a favorable role in the internal load transfer from the matrix medium to the filler region. Further, interfacial load transfers with the curing conversion of epoxies are taken into account in the equivalent FE model with the weakened interface concept. © 2021 Taylor & Francis Group, LLC.
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COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF MECHANICAL ENGINEERING > 1. Journal Articles

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