石墨烯基橡胶复合材料的制备与性能
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  • 英文篇名:Preparation and properties of graphene based rubber composites
  • 作者:闫思梦 ; 王鑫 ; 郄旭东 ; 张晓斌 ; 赵雄燕
  • 英文作者:YAN Si-meng;WANG Xin;QIE Xu-dong;ZHANG Xiao-bin;ZHAO Xiong-yan;College of Material Science and Engineering,Hebei University of Science and Technology;Shijiazhuang Beike Sealing Technology Co.,Ltd.;Hebei Aeronautical Lightweight Composite Engineering Laboratory;
  • 关键词:橡胶 ; 石墨烯 ; 石墨烯橡胶复合材料 ; 复合材料
  • 英文关键词:rubber;;graphene;;graphene rubber composite;;composites
  • 中文刊名:SXHG
  • 英文刊名:Applied Chemical Industry
  • 机构:河北科技大学材料科学与工程学院;石家庄贝克密封科技股份有限公司;河北省航空轻质复合材料工程实验室;
  • 出版日期:2019-06-10
  • 出版单位:应用化工
  • 年:2019
  • 期:v.48;No.328
  • 基金:河北省科技支撑计划项目(18211232D)
  • 语种:中文;
  • 页:SXHG201906049
  • 页数:5
  • CN:06
  • ISSN:61-1370/TQ
  • 分类号:236-240
摘要
综述了近年国内外石墨烯基橡胶复合材料的研究进展,主要包括石墨烯/天然橡胶复合材料、石墨烯/丁腈橡胶复合材料、石墨烯/丁苯橡胶复合材料、石墨烯/硅橡胶复合材料、石墨烯/丁基橡胶复合材料和石墨烯/异戊橡胶复合材料。同时对石墨烯基橡胶复合材料在制备和应用过程中遇到的难题进行了分析和总结。开发高质量石墨烯的绿色环保低成本制备和提纯技术以及提高石墨烯在橡胶中的有效分散效果将是今后该领域亟待解决的关键技术问题。
        The research progress of graphene based rubber composites at home and abroad in recent years is reviewed,including graphene/natural rubber composites,graphene/NBR composites,graphene/styrene butadiene rubber composites,graphene/silicone rubber composites,graphene/butyl rubber composites and graphene/isoamyl rubber composites. At the same time,the problems encountered in the preparation and application of graphene based rubber composites are analyzed and summarized. The development of green and low cost preparation and purification technology for high quality graphene and improving the effective dispersion effect of graphene in rubber will be the key technical problem to be solved in the future.
引文
[1]欧恩才.石墨烯分散液制备及其自组织现象研究[D].长沙:湖南大学,2012.
    [2]赵鹏程,樊尚春.石墨烯谐振式振动测量研究进展[J].计测技术,2017,37(4):1-3.
    [3]王鹏,苏正涛,王珊,等.国内外石墨烯/橡胶复合材料研究进展[J].新材料产业,2015(6):58-66.
    [4] Bailey P S,Bath S S. Ozonolyses of 1,2-dibenzoylpropene and 1,2-dibenzoylethylene markownikoff’s rule and the initial attack of ozone on an unsaturated system1[J].Journal of the American Chemical Society,1957,79(12):3120-3124.
    [5] Vinod V S,Varghese S,Kuriakose B. Degradation behaviour of natural rubber-aluminium powder composites:effect of heat,ozone and high energy radiation[J]. Polymer Degradation and Stability,2002,75(3):405-412.
    [6] Hawkins W L. Polymer degradation&stabilization[J].Additives for Polymers,1984,19(4):120-122.
    [7] Zhong B,Jia Z,Luo Y,et al. Preparation of halloysite nanotubes supported 2-mercaptobenzimidazole and its application in natural rubber[J]. Composites Part A:Applied Science and Manufacturing,2015,73:63-71.
    [8] Thrnblom K,Palmlf M,Hjertberg T. The extractability of phenolic antioxidants into water and organic solvents from polyethylene pipe materials-Part I[J]. Polymer Degradation and Stability,2011,96(10):1751-1760.
    [9] Zhan L,Li H Q,Lai X J,et al. Functionalized graphene as an effective antioxidant in natural rubber[J]. Composites Part A:Applied Science and Manufacturing,2018,107:47-54.
    [10] Zhan L,Li H Q,Lai X J,et al. Hindered phenol functionalized graphene oxide for natural rubber[J]. Materials Letters,2018,210:239-242.
    [11]孙立军,罗权焜.硫化体系对EPDM耐热老化性能的影响[J].橡胶工业,2002,49(4):197-200.
    [12] Mark J E,Erman B,Eirich F R. Science and Technology of Rubber[M]. 3rd ed. New York:Academic Press,2005.
    [13] Wu J R,Xing W,Huang G S,et al. Vulcanization kinetics of graphene/natural rubber nanocomposites[J]. Polymer,2013,54(13):3314-3323.
    [14] Zhan Y H,Meng Y Y,Li Y C. Electric heating behavior of flexible graphene/natural rubber conductor with self-healing conductive network[J]. Materials Letters,2017,192:115-118.
    [15]王奇.胶带产业发展论坛耐油橡胶输送带的研制与开发[J].中国橡胶,2007,23(4):19-23.
    [16]雷光艳.海水淡化新型换热管与管板连接方法[J].天津化工,2014,28(3):54-55.
    [17] Jagielski J,Kosinska A,Ostaszewska U,et al. Ion-irradiated butadiene acrylonitrile rubber reinforced with graphene filler[J]. Nuclear Instruments and Methods in Physics Research Section B:Beam Interactions with Materials and Atoms,2018,435:323-326.
    [18] Promchim J,Kanking S,Niltui P,et al. Swelling and mechanical properties of(acrylonitrile-butadiene rubber)/(hydrogenated acryloni-trile-butadiene rubber)blends with precipitated silica filled in gasohol fuels[J]. Journal of Vinyl and Additive Technology,2016,22:239-246.
    [19] Choudhury A,Bhowmick A K,Ong C,et al. Influence of molecular parameters on thermal,mechanical,and dynamic mechanical properties of hydrogenated nitrile rubber and its nanocomposites[J]. Polymer Engineering and Science,2010,50(7):1389-1399.
    [20] Choudhury A,Bhowmick A K,Ong C. Effect of different nanoparticles on thermal,mechanical and dynamic mechanical properties of hydrogenated nitrile butadiene rubber nanocomposites[J]. Journal of Applied Polymer Science,2010,116(3):1428-1441.
    [21] Zirnstein B,Tabaka W,Frasca D,et al. Graphene/hydrogenated acrylonitrile-butadiene rubber nanocomposites:Dispersion,curing,mechanical reinforcement,multifunctional filler[J]. Polymer Testing,2018,66:268-279.
    [22] Valentini L,Bon S B,Hernández M,et al. Nitrile butadiene rubber composites reinforced with reduced graphene oxide and carbon nanotubes show superior mechanical,electrical and icephobic properties[J]. Composites Science and Technology,2018,166:109-114.
    [23] Liu X,Kuang W Y,Guo B C. Preparation of rubber graphene oxide composites with in-situ interfacial design[J]. Polymer,2015,56:553-562.
    [24]贺东硕,杜爱华,谷建鹏,等.预分散石墨烯/丁苯橡胶纳米复合材料的性能[J].世界橡胶工业,2018,44(8):5-8.
    [25]郑龙,温世鹏,王超,等.氧化石墨烯与白炭黑并用填充丁苯橡胶纳米复合材料的性能[J].橡胶工业,2017,64(9):522-526.
    [26] Chiu H T,Sukachonmakul T,Kuo M T,et al. Surface modification of aluminum nitride by polysilazane and its polymer-derived amorphous silicon oxycarbide ceramic for the enhancement of thermal conductivity in silicone rubber composite[J]. Applied Surface Science,2014,292:928-936.
    [27] Gao B Z,Xu J Z,Peng J J,et al. Experimental and theoretical studies of effective thermal conductivity of composites made of silicone rubber and Al2O particles[J]. Thermochimica Acta,2015,614(20):1-8.
    [28] Peng W Y,Huang X Y,Yu J H,et al. Electrical and thermophysical properties of epoxy/aluminum nitride nanocomposites:Effects of nanoparticle surface modification[J]. Composites Part A:Applied Science and Manufacturing,2010,41(9):1201-1209.
    [29] Wu K,Le C X,Huang R,et al. Design and preparation of a unique segregated double network with excellent thermal conductive property[J]. ACS Applied Materials&Interfaces,2017,9(8):7637-7647.
    [30] Feng C P,Ni H Y,Chen J,et al. Facile method to fabricate highly thermally conductive graphite/PP composite with network structures[J]. ACS Applied Materials&Interfaces,2016,8(30):19732-19738.
    [31] Varenik M,Nadiv R,Levy I,et al. Breaking through the solid/liquid processability barrier:thermal conductivity and rheology in hybrid graphene-graphite polymer composites[J]. ACS Applied Materials&Interfaces,2017,9(8):7556-7564.
    [32] Song J N,Chen C B,Zhang Y. High thermal conductivity and stretchability of layer-by-layer assembled silicone rubber/graphene nanosheets multilayered films[J]. Composites Part A:Applied Science and Manufacturing,2018,105:1-8.
    [33] Tian L M,Wang Y J,Li Z Y,et al. The thermal conductivity-dependant drag reduction mechanism of water droplets controlled by graphene/silicone rubber composites[J].Experimental Thermal and Fluid Science,2017,85:363-369.
    [34] Bai X,Zhai Y H,Zhang Y. Green approach to prepare graphene-based composites with high microwave absorption capacity[J]. The Journal of Physical Chemistry C,2011,115(23):11673-11677.
    [35] Singh V K,Shukla A,Patra M K,et al. Microwave absorbing properties of a thermally reduced graphene oxide/nitrile butadiene rubber composite[J]. Carbon,2012,50(6):2202-2208.
    [36] Chen C Y,Pu N W,Liu Y M,et al. Microwave absorption properties of holey graphene/silicone rubber composites[J]. Composites Part B:Engineering,2018,135:119-128.
    [37] Parent J S,Thom D J,White G,et al. Thermal stability of brominated poly(isobutylene-co-isoprene)[J]. Polymer Chemistry,2001,39(12):2019-2026.
    [38] Kotal M,Banerjee S S,Bhowmick A K. Functionalized graphene with polymer as unique strategy in tailoring the properties of bromobutyl rubber nanocomposites[J]. Polymer,2016,82:121-132.
    [39]韩潇,隆燕妮,李要山,等.石墨烯微片在溴化丁基橡胶中的应用研究[J].大众科技,2018,20(220):7-10.
    [40] Xie Z T,Fu X,Wei L Y,et al. New evidence disclosed for the engineered strong interfacial interaction of graphene/rubber nanocomposites[J]. Polymer,2017,118:30-39.
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