Improving the thermal and electrical properties of polymer composites by ordered distribution of carbon micro- and nanofillers

被引:30
|
作者
Maruzhenko, Oleksii [1 ,2 ]
Mamunya, Yevgen [1 ]
Boiteux, Gisele [3 ]
Pusz, Slawomira [4 ]
Szeluga, Urszula [4 ]
Pruvost, Sebastien [2 ]
机构
[1] Inst Macromol Chem NAS Ukraine, 48 Kharkivske Chaussee, UA-02160 Kiev, Ukraine
[2] Univ Lyon, INSA Lyon, UMR CNRS 5223, IMP Ingn Mat Polymeres, F-69621 Villeurbanne, France
[3] Univ Lyon, Univ Lyon 1, UMR CNRS 5223, Imp Ingn Mat Polymeres, F-69622 Villeurbanne, France
[4] Polish Acad Sci, Ctr Polymer & Carbon Mat, M Curie Sklodowskiej 34, Zabrze, Poland
关键词
Polymer composites; Nanocomposites; Segregated structure; Electrical conductivity; Thermal conductivity; WEIGHT POLYETHYLENE COMPOSITES; PERCOLATION-THRESHOLD; MECHANICAL-PROPERTIES; CONDUCTIVITY; NANOTUBE; BEHAVIOR; FILLERS; PRELOCALIZATION; NANOCOMPOSITES; PERMITTIVITY;
D O I
10.1016/j.ijheatmasstransfer.2019.04.043
中图分类号
O414.1 [热力学];
学科分类号
摘要
This article presents the study of electrical and thermal properties of segregated polymer composites based on ultra-high-molecular-weight polyethylene (UHMWPE) filled with carbon fillers (nanofiller graphene (Gr), microfiller anthracite (A) and hybrid filler Gr/A). It is shown that the formation of a segregated structure with an ordered distribution of the filler leads to a high local concentration in the intergrain boundaries, which causes a lower percolation threshold. Thus, in the composite UHMWPE + A, the percolation threshold is an order of magnitude lower than for a system with a random distribution of the filler. The segregated composite with nanofiller UHMWPE + Gr provides a 14-fold lower percolation threshold than the composite with microfiller UHMWPE + A. Composite with the hybrid filler Gr/A also exhibits a low percolation threshold close to the UHMWPE + Gr. The plot of the thermal conductivity versus filler content does not show the percolation behavior and obeys the equation of the Lichtenecker. The thermal conductivity parameter lambda(f) in the segregated system is 4.4 times higher than for the uniform distribution of the filler that indicates an increased thermal transport through the filler phase located at the boundaries in the segregated structure. (C) 2019 Published by Elsevier Ltd.
引用
收藏
页码:75 / 84
页数:10
相关论文
共 50 条
  • [1] Mechanical properties of carbon-fiber-reinforced epoxy composites modified by carbon micro- and nanofillers
    Burkov, Mikhail V.
    Eremin, Alexander V.
    POLYMER COMPOSITES, 2021, 42 (09) : 4265 - 4276
  • [2] Effects of carbon-based nanofillers on mechanical, electrical, and thermal properties of bast fiber reinforced polymer composites
    Syduzzaman, Md
    Chowdhury, Kawser Parveen
    Fahmi, Fahmida Faiza
    Rumi, Shaida Sultana
    Hassan, Abir
    JOURNAL OF THERMOPLASTIC COMPOSITE MATERIALS, 2024, 37 (08) : 2723 - 2774
  • [3] Polymer Composites with Graphene Nanofillers: Electrical Properties and Applications
    Tjong, Sie Chin
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2014, 14 (02) : 1154 - 1168
  • [4] Simultaneous enhancement of mechanical and electrical/thermal properties of carbon fiber/polymer composites via SiC nanowires/graphene hybrid nanofillers
    Wang, Tiyuan
    Song, Qiang
    Zhang, Shouyang
    Li, Kun
    Xiao, Caixiang
    Lin, Hongjiao
    Shen, Qingliang
    Li, Hejun
    COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2021, 145
  • [5] Mechanical and thermal properties of polymer micro- and nanocomposites
    Picken, Stephan J.
    Korobko, Alexander V.
    Mendes, Eduardo
    Norder, Ben
    Makarova, Veronika V.
    Vasilyev, Gleb B.
    Karbushev, Valeriy V.
    Tolstykh, Mariya Yu
    JOURNAL OF POLYMER ENGINEERING, 2011, 31 (2-3) : 269 - 273
  • [6] Electrical, thermal, and mechanical properties of silicone foam composites filled with carbon-based nanofillers
    Zhang, Yu-Long
    Zang, Chong-Guang
    Jiao, Qing-Jie
    JOURNAL OF APPLIED POLYMER SCIENCE, 2020, 137 (39)
  • [7] PREPARATION AND PROPERTIES OF MICRO- AND NANOFILLED POLYMER COMPOSITES ON TEXTILES
    Studynkova, Zuzana
    Kucera, Frantisek
    Jobanek, Adam
    NANOCON 2011, 2011, : 439 - 444
  • [8] Fabrication technique and thermal insulation properties of micro- and nano-channeled polymer composites
    Schmid, Eric D.
    Salem, David R.
    ACTA ASTRONAUTICA, 2015, 116 : 68 - 73
  • [9] Electrical conductivities of carbon powder nanofillers and their latex-based polymer composites
    Ghislandi, M.
    Tkalya, E.
    Marinho, B.
    Koning, C. E.
    de With, G.
    NANOTECHNOLOGY 2012, VOL 1: ADVANCED MATERIALS, CNTS, PARTICLES, FILMS AND COMPOSITES, 2012, : 302 - 305
  • [10] Electrical conductivities of carbon powder nanofillers and their latex-based polymer composites
    Ghislandi, Marcos
    Tkalya, Evgeniy
    Marinho, Bernardo
    Koning, Cor E.
    de With, Gijsbertus
    COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2013, 53 : 145 - 151