Effects of applying a graphene/polyurethane composite thermally conductive film on capacitor heat dissipation performance

被引:0
|
作者
Miao, Qinghua [1 ]
Guo, Ruihan [1 ]
Liu, Pengfei [1 ]
Li, Jie [1 ]
机构
[1] Harbin Univ Commerce, Sch Energy & Architecture Engn, Harbin 150028, Heilongjiang, Peoples R China
关键词
GRAPHENE;
D O I
10.1063/5.0218200
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In this study, the effects of applying graphene/polyurethane composite thermally conductive films on heat dissipation performance of capacitors were investigated. By adding graphene as a thermally conductive filler, the thermal conductivity of the composite film could be adjusted by controlling the type and content of the film. Graphene/polyurethane nanocomposite films with different mass fractions were prepared by adding 0.03, 0.06, and 0.3 wt. % graphene. The lattice and valence bond structures of the C atoms in the composite films were analyzed using x-ray diffraction, Raman spectroscopy, x-ray photoelectron spectroscopy, and Fourier transform infrared spectroscopy to investigate the extent of graphene defects and types of functional groups in the composite film materials. The thermal conductivity of the composite films was measured using a heat conduction analyzer, and the thermal diffusion coefficient was calculated. The steady-state thermal analysis showed that the capacitor with the composite film exhibited better thermal performance under the same conditions and significantly reduced the center temperature compared with those observed with other configurations. This study reveals the working mechanism of polyurethane/graphene composite thermal conductive film in the heat dissipation performance of capacitors. This study is of great significance for optimizing the design of capacitors, improving their efficiency, and maintaining long-term stable operation. By improving the thermal conductivity of composite films, capacitors with more uniform overall temperature distributions and reduced surface temperatures can be achieved, which will help improve the overall performance of capacitors and extend their service lives. (c) 2025 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International (CC BY-NC-ND) license (https://creativecommons.org/licenses/by-nc-nd/4.0/)
引用
收藏
页数:13
相关论文
共 50 条
  • [41] Highly-conductive, durability and flexible graphene-metal brazed strip and its heat-dissipation performance
    Deng, Zhongyang
    Xue, Junliang
    Guo, Wei
    Shi, Jiaxin
    Jia, Qiang
    Zhang, Hongqiang
    CERAMICS INTERNATIONAL, 2023, 49 (11) : 18671 - 18677
  • [42] Transparent conductive film of polyvinyl alcohol: reduced graphene oxide composite
    Georgiou, Konstantinos
    Koutsioukis, Apostolos
    Georgakilas, Vasilios
    JOURNAL OF MATERIALS SCIENCE, 2021, 56 (30) : 17028 - 17039
  • [43] Transparent conductive film of polyvinyl alcohol: reduced graphene oxide composite
    Konstantinos Georgiou
    Apostolos Koutsioukis
    Vasilios Georgakilas
    Journal of Materials Science, 2021, 56 : 17028 - 17039
  • [44] Polyacrylonitrile-derived thermally conductive graphite film via graphene template effect
    Huang, Haoguang
    Ming, Xin
    Wang, Yazhe
    Guo, Fan
    Liu, Yingjun
    Xu, Zhen
    Peng, Li
    Gao, Chao
    CARBON, 2021, 180 : 197 - 203
  • [45] Preparation of thermoplastic polyurethane/graphene oxide composite scaffolds by thermally induced phase separation
    Jing, Xin
    Mi, Hao-Yang
    Salick, Max R.
    Peng, Xiang-Fang
    Turng, Lih-Sheng
    POLYMER COMPOSITES, 2014, 35 (07) : 1408 - 1417
  • [46] A combination of aramid nanofiber and silver nanoparticle decorated boron nitride for the preparation of a composite film with superior thermally conductive performance
    Zhao, Lihua
    Liao, Changjun
    Liu, Yang
    Huang, Xiaolong
    Ning, Wenjun
    Wang, Zhong
    Jia, Lichuan
    Ren, Junwen
    COMPOSITE INTERFACES, 2022, 29 (04) : 447 - 463
  • [47] Conductive Graphene Nanoribbon Thin Film as Heat Circuit for Antennas and Radomes
    Volman, Vladimir
    Zhu, Yu
    Tour, James M.
    Raji, Abdul-Rahman O.
    2013 IEEE INTERNATIONAL SYMPOSIUM ON PHASED ARRAY SYSTEMS AND TECHNOLOGY, 2013, : 301 - 306
  • [48] Annealing treatment on waterborne polyurethane film-forming and structural features induced heat conduction performance in conductive adhesive
    Li, Rui
    Shan, Zhihua
    INTERNATIONAL JOURNAL OF ADHESION AND ADHESIVES, 2022, 117
  • [49] Preparation and Performance of Graphene Oxide Modified Polyurethane Thermal Conductive Insulating Adhesive
    Yunxue Liu
    Xiaotian Kang
    Zhaorong Fan
    Yaxin Gu
    Peng Liu
    Journal of Wuhan University of Technology-Mater. Sci. Ed., 2022, 37 : 1025 - 1031
  • [50] Preparation and Performance of Graphene Oxide Modified Polyurethane Thermal Conductive Insulating Adhesive
    刘运学
    KANG Xiaotian
    FAN Zhaorong
    GU Yaxin
    刘鹏
    JournalofWuhanUniversityofTechnology(MaterialsScience), 2022, 37 (05) : 1025 - 1031