Investigation of thermodynamic and shape memory properties of alumina nanoparticle-loaded graphene oxide (GO) reinforced nanocomposites

In this work, a functionalized hybrid Al2O3-GO was fabricated and introduced into trans-1,4-polyisoprene (TPI) matrix as a new filler. The incorporation of the hybrid optimized the heat resistance, mechanical strength, and fracture toughness of the composites simultaneously. The ultrathin GO shells...

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Main Authors: Jingbiao Liu, Jianxin Teng, Kumchol Yun, Zhenqing Wang, Xiaoyu Sun
Format: Article
Language:English
Published: Elsevier 2019-11-01
Series:Materials & Design
Online Access:http://www.sciencedirect.com/science/article/pii/S0264127519303648
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spelling doaj-d9518a426f54435dab5267ec6638d9572020-11-25T01:18:49ZengElsevierMaterials & Design0264-12752019-11-01181Investigation of thermodynamic and shape memory properties of alumina nanoparticle-loaded graphene oxide (GO) reinforced nanocompositesJingbiao Liu0Jianxin Teng1Kumchol Yun2Zhenqing Wang3Xiaoyu Sun4College of Aerospace and Civil Engineering, Harbin Engineering University, Harbin, ChinaCollege of Aerospace and Civil Engineering, Harbin Engineering University, Harbin, ChinaCollege of Aerospace and Civil Engineering, Harbin Engineering University, Harbin, China; Faculty of Mechanics, Kim Il Sung University, Pyongyang 950003, Democratic People's Republic of KoreaCollege of Aerospace and Civil Engineering, Harbin Engineering University, Harbin, China; Corresponding authors.College of Aerospace and Civil Engineering, Harbin Engineering University, Harbin, China; Corresponding authors.In this work, a functionalized hybrid Al2O3-GO was fabricated and introduced into trans-1,4-polyisoprene (TPI) matrix as a new filler. The incorporation of the hybrid optimized the heat resistance, mechanical strength, and fracture toughness of the composites simultaneously. The ultrathin GO shells at Al2O3-TPI interfaces were considered to be the main reason for the enhancement. They effectively enhanced the interfacial interaction of the Al2O3-GO/TPI nanocomposites, thus greatly improved the thermodynamic properties of the TPI. The mechanical, thermal, and shape memory properties of nanocomposites were characterized through systematic tests from microscale to macroscale. According to the experimental results, the nanocomposite samples with GO (0.9 wt%) and Al2O3 nanoparticles (1.2 wt%) show the best thermal and mechanical properties in comparison with other samples, and a good shape memory property was obtained or realized in the fabricated nanocomposites. We believe this new and effective approach may open a novel interface design strategy for developing high performance composites. Keywords: Al2O3-GO nanohybrids, Polymer nanocomposite, Thermodynamic properties, Shape memoryhttp://www.sciencedirect.com/science/article/pii/S0264127519303648
collection DOAJ
language English
format Article
sources DOAJ
author Jingbiao Liu
Jianxin Teng
Kumchol Yun
Zhenqing Wang
Xiaoyu Sun
spellingShingle Jingbiao Liu
Jianxin Teng
Kumchol Yun
Zhenqing Wang
Xiaoyu Sun
Investigation of thermodynamic and shape memory properties of alumina nanoparticle-loaded graphene oxide (GO) reinforced nanocomposites
Materials & Design
author_facet Jingbiao Liu
Jianxin Teng
Kumchol Yun
Zhenqing Wang
Xiaoyu Sun
author_sort Jingbiao Liu
title Investigation of thermodynamic and shape memory properties of alumina nanoparticle-loaded graphene oxide (GO) reinforced nanocomposites
title_short Investigation of thermodynamic and shape memory properties of alumina nanoparticle-loaded graphene oxide (GO) reinforced nanocomposites
title_full Investigation of thermodynamic and shape memory properties of alumina nanoparticle-loaded graphene oxide (GO) reinforced nanocomposites
title_fullStr Investigation of thermodynamic and shape memory properties of alumina nanoparticle-loaded graphene oxide (GO) reinforced nanocomposites
title_full_unstemmed Investigation of thermodynamic and shape memory properties of alumina nanoparticle-loaded graphene oxide (GO) reinforced nanocomposites
title_sort investigation of thermodynamic and shape memory properties of alumina nanoparticle-loaded graphene oxide (go) reinforced nanocomposites
publisher Elsevier
series Materials & Design
issn 0264-1275
publishDate 2019-11-01
description In this work, a functionalized hybrid Al2O3-GO was fabricated and introduced into trans-1,4-polyisoprene (TPI) matrix as a new filler. The incorporation of the hybrid optimized the heat resistance, mechanical strength, and fracture toughness of the composites simultaneously. The ultrathin GO shells at Al2O3-TPI interfaces were considered to be the main reason for the enhancement. They effectively enhanced the interfacial interaction of the Al2O3-GO/TPI nanocomposites, thus greatly improved the thermodynamic properties of the TPI. The mechanical, thermal, and shape memory properties of nanocomposites were characterized through systematic tests from microscale to macroscale. According to the experimental results, the nanocomposite samples with GO (0.9 wt%) and Al2O3 nanoparticles (1.2 wt%) show the best thermal and mechanical properties in comparison with other samples, and a good shape memory property was obtained or realized in the fabricated nanocomposites. We believe this new and effective approach may open a novel interface design strategy for developing high performance composites. Keywords: Al2O3-GO nanohybrids, Polymer nanocomposite, Thermodynamic properties, Shape memory
url http://www.sciencedirect.com/science/article/pii/S0264127519303648
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