Preparing and study on thermal-conductive epoxy resin nanocomposites

被引:0
|
作者
Feng, Huixia [1 ]
Zhang, Guohong [2 ]
Luo, Heming [1 ]
Zhang, Jianqiang [1 ]
Qiu, Jianhui [2 ]
机构
[1] Lanzhou Univ Tech, Coll Petrochem Technol, Gansu Lanzhou 730050, Peoples R China
[2] Akita Prefectural Univ, Fac Syst Engn, Dept Machine Intelligence & Syst Engn, Akita, Japan
关键词
Metal powder; filler; organic-montmorillonite; epoxy resin; thermal conductivity;
D O I
10.4028/www.scientific.net/AMM.44-47.3021
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Metal powder (Cu) filled Epoxy resin (EP)/Organic-montmorillonite nanocomposites were prepared, where the compounding was carried out by using hardener with filler loadings of 0wt%, 5wt%, 10wt%, 15wt% and 20wt%. Organic-montmorillonite was prepared by using the method of Secondary-intercalating with transition metal ion and cetyl trimethyl ammonium bromide (CTAB) as the modifier. The content of Organic-montmorillonite dispersed in EP system was 3wt%. The effect of filler loadings and incorporation of coupling agent on tensile properties and thermal conductivity are studied. The results demonstrate that, an increase in filler loading is found to increase the tensile strength and thermal conductivity of M filled EP composites. By adding 2% coupling agent, the decrease of tensile strength with increasing filler loadings can be observed in 20%Cu-EP composite. However, the addition of 2% coupling agent in 20%Cu/OMMT/EP composite allowed the increment of tensile strength and assisted in greater increment of thermal conductivity of the composites.
引用
收藏
页码:3021 / +
页数:2
相关论文
共 50 条
  • [21] Functionalized graphite nanoplatelets/epoxy resin nanocomposites with high thermal conductivity
    Gu, Junwei
    Yang, Xutong
    Lv, Zhaoyuan
    Li, Nan
    Liang, Chaobo
    Zhang, Qiuyu
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2016, 92 : 15 - 22
  • [22] Excellent thermal conductivity of transparent cellulose nanofiber/epoxy resin nanocomposites
    Shimazaki, Yuzuru
    Miyazaki, Yasuo
    Takezawa, Yoshitaka
    Nogi, Masaya
    Abe, Kentaro
    Ifuku, Shinsuke
    Yano, Hiroyuki
    BIOMACROMOLECULES, 2007, 8 (09) : 2976 - 2978
  • [23] Functionalized montmorillonite/epoxy resin nanocomposites with enhanced thermal and mechanical properties
    Su, Linna
    Fang, Changfa
    Luo, Huanzhong
    RSC ADVANCES, 2024, 14 (42) : 31251 - 31258
  • [24] Nickel conductive adhesive based on bisphenol A epoxy resin modified by CTBN/dicyclopentadiene epoxy resin: Effects of epoxy resin structure on mechanical properties and thermal stability
    Xiong, Zikai
    Yu, Chunxiu
    Jing, Danlei
    Li, Yanhua
    Wang, Yunkai
    Hu, Yongqing
    Guo, Junmei
    Li, Wei
    Li, Junpeng
    JOURNAL OF MOLECULAR STRUCTURE, 2025, 1325
  • [25] Thermal properties of epoxy resin/layered double hydroxide intercalated nanocomposites
    Brnardić, Ivan
    Matusinović, Zvonimir
    Šipušić, Juraj
    Macan, Jelena
    Polimeri, 2012, 33 (02): : 52 - 57
  • [26] Mechanical and Thermal Properties of Epoxy Resin Nanocomposites Reinforced with Graphene Oxide
    Liu, Qinghong
    Zhou, Xufeng
    Fan, Xinyu
    Zhu, Chunyang
    Yao, Xiayin
    Liu, Zhaoping
    POLYMER-PLASTICS TECHNOLOGY AND ENGINEERING, 2012, 51 (03) : 251 - 256
  • [27] Preparation of functionalized kaolinite/epoxy resin nanocomposites with enhanced thermal properties
    Su, Linna
    Zeng, Xiaoliang
    He, Hongping
    Tao, Qi
    Komarneni, Sridhar
    APPLIED CLAY SCIENCE, 2017, 148 : 103 - 108
  • [28] A "Thermal-conductive Simplified Model" for the Actual Temperature of Overloaded Cables
    Cardenas, D.
    IEEE LATIN AMERICA TRANSACTIONS, 2019, 17 (04) : 615 - 624
  • [29] IR study on hydrogen bonding in epoxy resin–silica nanocomposites
    Abbas A. Dehghani-Sanij
    Richard S. Blackburn
    Progress in Natural Science, 2008, (07) : 801 - 805
  • [30] DEA and DSC study of cubic silsesquioxane epoxy resin nanocomposites
    Diaz, NL
    de Aquino, HA
    E-POLYMERS, 2006,