Enhanced thermal conductivity of carbon fibers/silanized graphene/epoxy matrix composites

被引:2
|
作者
Yao, Shan-Shan [1 ]
Lee, Seul-Yi [2 ]
Li, Hai-Long [1 ]
Jin, Fan-Long [1 ]
Park, Soo-Jin [2 ]
机构
[1] Jilin Inst Chem Technol, Dept Polymer Mat, Jilin 132022, Peoples R China
[2] Inha Univ, Dept Chem Engn, Inharo 100, Incheon 22212, South Korea
关键词
DGEBA; Carbon fiber cloth; Graphene; Composites; Thermal conductivity; FRACTURE-TOUGHNESS; NANOCOMPOSITE; COATINGS;
D O I
10.1007/s42823-023-00649-2
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This study aimed to fabricate composites with high thermal conductivity using diglycidyl ether of bisphenol-A (DGEBA), incorporating carbon fiber cloth (CFC) and graphene as reinforcing agents. Notably, the dispersion of graphene within the DGEBA matrix was enhanced through surface modification via a silane coupling agent. The effects of CFC and graphene addition on the impact strength, thermal conductivity, and morphology of the composites were examined. The experimental results showed that the incorporation of 6 wt% CFC resulted in a substantial (16-fold) increase in impact strength. Furthermore, the introduction of 6 wt% CFCs along with 20 wt% graphene led to a remarkable enhancement in thermal conductivity to 5.7 W/(m K), which was approximately 22 and 4 times higher than the intrinsic thermal conductivities of pristine DGEBA and the CFC/DGEBA composite, respectively. The increased impact strength is ascribed to the incorporation of CFC and silane-modified graphene. Additionally, the gradual increase in thermal conductivity can be attributed to the enhanced interaction between the acidic silane-modified graphene and the basic epoxy-amine hardener within the system studied.
引用
收藏
页码:647 / 655
页数:9
相关论文
共 50 条
  • [31] Recent progress on thermal conductivity of graphene filled epoxy composites
    Ruicong Lv
    Yanjuan Ren
    Haichang Guo
    Shulin Bai
    [J]. Nano Materials Science., 2022, 4 (03) - 219
  • [32] Thermal conductivity of microPCMs-filled epoxy matrix composites
    Jun-Feng Su
    Xin-Yu Wang
    Zhen Huang
    Yun-Hui Zhao
    Xiao-Yan Yuan
    [J]. Colloid and Polymer Science, 2011, 289 : 1535 - 1542
  • [33] Enhanced thermal conductivity of PEEK based composites fabricated by its fibers grafted graphene oxide
    Sun, Youli
    Dang, Hongbo
    Li, Xiunan
    Luan, Jiashuang
    Jiang, Dong
    Mu, Jianxin
    Yang, Yanhua
    [J]. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2024, 683
  • [34] Thermal conductivity of microPCMs-filled epoxy matrix composites
    Su, Jun-Feng
    Wang, Xin-Yu
    Huang, Zhen
    Zhao, Yun-Hui
    Yuan, Xiao-Yan
    [J]. COLLOID AND POLYMER SCIENCE, 2011, 289 (14) : 1535 - 1542
  • [35] Thermal conductivity of thermoplastic composites with submicrometer carbon fibers
    Kuriger, RJ
    Alam, MK
    [J]. EXPERIMENTAL HEAT TRANSFER, 2002, 15 (01) : 19 - 30
  • [36] Carbon fiber epoxy-matrix composites with hydrothermal-carbon-coated halloysite nanotube filler exhibiting enhanced strength and thermal conductivity
    Wu, Xueping
    Zhao, Junshuai
    Rao, Xu
    Chung, D. D. L.
    [J]. POLYMER COMPOSITES, 2020, 41 (07) : 2687 - 2703
  • [37] INTERFACIAL PROPERTIES OF CARBON-FIBERS EPOXY MATRIX COMPOSITES
    SCHULTZ, J
    LAVIELLE, L
    MARTIN, C
    [J]. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1988, 195 : 207 - PMSE
  • [38] Densification: A Route towards Enhanced Thermal Conductivity of Epoxy Composites
    Moradi, Sasan
    Roman, Frida
    Calventus, Yolanda
    Hutchinson, John M.
    [J]. POLYMERS, 2021, 13 (02) : 1 - 12
  • [39] Boron nitride microsphere/epoxy composites with enhanced thermal conductivity
    Sun, Jiajia
    Wang, De
    Yao, Yimin
    Zeng, Xiaoliang
    Pan, Guiran
    Huang, Yun
    Hu, Jiantao
    Sun, Rong
    Xu, Jian-Bin
    Wong, Ching-Ping
    [J]. HIGH VOLTAGE, 2017, 2 (03): : 147 - 153
  • [40] Geometric analysis of enhanced thermal conductivity in epoxy composites: A comparison of graphite and carbon nanofiber fillers
    Ruminski, Anne M.
    Yang, Fan
    Cho, Eun Seon
    Silber, Joseph
    Olivera, Edgar
    Johnson, Thomas
    Anderssen, Eric C.
    Haber, Carl H.
    Urban, Jeffrey J.
    [J]. PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE, 2017, 214 (01):