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정하영

Chung, Hayoung
Computational Structural Mechanics and Design Lab.
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Multiscale Study of Shape-Memory Behavior of Semicrystalline Polyurethane Nanocomposites Doped with Silica Nanoparticles Based on Coarse-Grained Molecular Dynamics Simulation

Author(s)
Park, SungwooMoon, JunghwanCho, MaenghyoLee, Yun SeogChung, HayoungYang, Seunghwa
Issued Date
2024-03
DOI
10.1021/acsapm.3c02968
URI
https://scholarworks.unist.ac.kr/handle/201301/81974
Citation
ACS APPLIED POLYMER MATERIALS, v.6, no.6, pp.3192 - 3206
Abstract
The thermo-mechanical behavior of shape-memory polyurethane (SMPU)-silica nanocomposites is studied. We propose a coarse-grained (CG) molecular dynamics (MD) model and capture atomic-level interactions, focusing on the interfacial region between the polymer matrix and nanoparticles. The shape-memory performances are evaluated according to the hard segment content (HSC) of the SMPU matrix and the weight percentage of nanoparticles. The study reveals that elevated silica contents trigger nanoparticle clustering, degrading the shape recovery. Additionally, HSC affects the matrix-nanoparticle compatibility and determines the degree of nanoparticle agglomeration and shape-memory properties. These findings contribute to designing deformations in semicrystalline shape-memory polymer nanocomposites and actuators.
Publisher
AMER CHEMICAL SOC
ISSN
2637-6105
Keyword (Author)
shape-memory polyurethane (SMPU)silica nanoparticlenanocompositescoarse-grained (CG)agglomeration
Keyword
POLYMER NANOCOMPOSITESGLASS-TRANSITIONPART ICOMPOSITESCRYSTALLIZATIONINTERPHASEMODELCRYSTALLINITYMORPHOLOGYSEGMENTS

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