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导电玻璃纤维及其功能复合材料研究进展

高晓东 杨卫民 程礼盛 丁玉梅 谭晶

高晓东, 杨卫民, 程礼盛, 等. 导电玻璃纤维及其功能复合材料研究进展[J]. 复合材料学报, 2021, 38(1): 36-44. doi: 10.13801/j.cnki.fhclxb.20200825.004
引用本文: 高晓东, 杨卫民, 程礼盛, 等. 导电玻璃纤维及其功能复合材料研究进展[J]. 复合材料学报, 2021, 38(1): 36-44. doi: 10.13801/j.cnki.fhclxb.20200825.004
GAO Xiaodong, YANG Weimin, CHENG Lisheng, et al. Recent research progress in conductive glass fiber and polymer-based functional composites[J]. Acta Materiae Compositae Sinica, 2021, 38(1): 36-44. doi: 10.13801/j.cnki.fhclxb.20200825.004
Citation: GAO Xiaodong, YANG Weimin, CHENG Lisheng, et al. Recent research progress in conductive glass fiber and polymer-based functional composites[J]. Acta Materiae Compositae Sinica, 2021, 38(1): 36-44. doi: 10.13801/j.cnki.fhclxb.20200825.004

导电玻璃纤维及其功能复合材料研究进展

doi: 10.13801/j.cnki.fhclxb.20200825.004
基金项目: 中央高校基本科研业务费项目(XK1802-3)
详细信息
    通讯作者:

    谭晶,博士,副教授,硕士生导师,研究方向为聚合物基复合材料加工原理及方法 E-mail:tanj@mail.buct.edu.cn

  • 中图分类号: TB332

Recent research progress in conductive glass fiber and polymer-based functional composites

  • 摘要: 玻璃纤维增强聚合物基复合材料因其成本低、力学性能好等优点被广泛应用,而导电玻璃纤维增强复合材料将进一步拓展玻璃纤维复合材料的应用领域,也是其未来发展的重要方向。本文综述了国内外导电玻璃纤维的种类、构建结构及特征性能等,同时介绍了不同导电玻璃纤维对玻璃纤维功能复合材料的性能影响;最后,结合目前导电玻璃纤维及其复合材料的应用和限制,阐述了聚合物基导电玻璃纤维功能复合材料的发展趋势。

     

  • 图  1  玻璃纤维化学镀Cu原理示意图[13]

    Figure  1.  Schematic illustration of electroless plating of Cu on glass fibers[13]

    图  2  镀Cu玻璃纤维增强树脂复合材料的SEM图像[14]

    Figure  2.  SEM images on the fracture surface of Cu coated glass fiber reinforced polymer composite (((a), (b)) Fracture surface of Cu coated glass fibers; ((c), (d)) Fracture surface of composite)[14]

    图  3  镀Ni玻璃纤维/聚丙烯复合材料的制备原理示意图[19]

    Figure  3.  Schematic illustration of preparation of Ni coated glass fiber/ polypropylene composites[19]

    图  4  聚丙烯/镀Ni玻璃纤维/TiO2复合材料的制备原理示意图[20]

    Figure  4.  Schematic of fabrication of polypropylene/Ni coated glass fiber/TiO2 composite[20]

    NCGF—Ni coated glass fiber; PP—Polypropylene

    图  5  不同处理的镀Ag玻璃纤维的SEM图像[21]

    Figure  5.  SEM images of Ag-coated glass fiber with different treatment methods ((a) Ultrasonic treatment; (b) Stirring treatment)[21]

    图  6  纤维催化化学镀和金属沉积的连续过程示意图[32]

    Figure  6.  Schematic of continuous process of fiber catalysis and metal deposition by electroless plating[32]

    图  7  溶胶-凝胶法和浸渍-涂覆法制备石墨烯涂覆玻璃纤维的示意图[34]

    Figure  7.  Preparation schematic of graphene-coated glass fiber by sol-gel and dip-coating technique[34]

    GO—Graphene oxide; rGO—Reduced graphene oxide

    图  8  氧化石墨烯包覆玻璃纤维制备过程示意图[37]

    Figure  8.  Schematic diagram of preparation process of glass fibers coated by graphene oxide[37]

    BSA—Bovine serum albumin; GF—Glass fiber

    图  9  导电率可调的结构复合材料[43]

    Figure  9.  Structural composites with adjustable electrical conductivity[43]

    CNT—Carbon nanotube

    图  10  电导率可调的碳纳米管涂层玻璃纤维结构复合材料[45]

    Figure  10.  Carbon nanotubes coating glass fiber structural composites with adjustable electrical conductivity[45]

    MWCNT—Multiwall carbon nanotube; THF—Tetrahydrofuran; γ-APS—γ-Aminopropyltriethoxysilane

  • [1] 马明明, 张彦. 玻璃纤维及其复合材料的应用进展[J]. 化工新型材料, 2016, 44(2):38-40.

    MA M M, ZHANG Y. Progress in the application of glass fiber and its composites material[J]. New Chemical Materials,2016,44(2):38-40(in Chinese).
    [2] COUSINS D S, SUZUKI Y, MURRAY R E, et al. Recycling glass fiber thermoplastic composites from wind turbine blades[J]. Journal of Cleaner Production,2019,209:1252-1263. doi: 10.1016/j.jclepro.2018.10.286
    [3] LI H, RICHARDS C, WATSON J. High-performance glass fiber development for composite applications[J]. International Journal of Applied Glass Science,2014,5(1):65-81. doi: 10.1111/ijag.12053
    [4] RYU J B, LYU M Y. A study on the mechanical property and 3D fiber distribution in injection molded glass fiber reinforced PA66[J]. International Polymer Processing,2014,29(3):389-401. doi: 10.3139/217.2844
    [5] SINGH J, KUMAR M, KUMAR S, et al. Properties of glass-fiber hybrid composites: A review[J]. Polymer-Plastics Technology and Engineering,2017,56(5):455-469. doi: 10.1080/03602559.2016.1233271
    [6] PAZMINLO J, CARVELLI V, LOMOV S V. Formability of a non-crimp 3D orthogonal weave E-glass composite reinforcement[J]. Composites Part A: Applied Science and Manufacturing,2014,61:76-83. doi: 10.1016/j.compositesa.2014.02.004
    [7] 曹玉忠, 李建华. 连续玻璃纤维增强聚甲醛复合材料的制备与性能研究[J]. 塑料工业, 2014, 42(3):54-57.

    CAO Y Z, LI J H. Research on preparation and properties of continuous glass fiber reinforced POM composites[J]. China Plastics Industry,2014,42(3):54-57(in Chinese).
    [8] CAO M S, SONG W L, HOU Z L, et al. The effects of temperature and frequency on the dielectric properties, electromagnetic interference shielding and microwave-absorption of short carbon fiber/silica composites[J]. Carbon,2010,48(3):788-796. doi: 10.1016/j.carbon.2009.10.028
    [9] KANG Y Q, CAO M S, YUAN J, et al. Preparation and microwave absorption properties of basalt fiber/nickel core-shell heterostructures[J]. Journal of Alloys and Compounds,2010,495(1):254-259. doi: 10.1016/j.jallcom.2010.01.143
    [10] 王希晰, 曹茂盛. 特色研究报告: 低维电磁功能材料研究进展[J]. 表面技术, 2020, 49(2):18-28, 40.

    WANG X X, CAO M S. Low-dimensional electromagnetic functional materials[J]. Surface Technology,2020,49(2):18-28, 40(in Chinese).
    [11] 毛海亮. 玻璃纤维织物及其树脂复合材料的电性能研究[D]. 上海: 东华大学, 2015.

    MAO H L. Electrical performance of glass fabric and its composite[D]. Shanghai: Donghua University, 2015(in Chinese).
    [12] 张海涛, 陈莉云, 王亚龙, 等. 玻璃纤维化学镀铜工艺条件的优化研究[J]. 材料保护, 2002, 35(10):50-52. doi: 10.3969/j.issn.1001-1560.2002.10.023

    ZHANG H T, CHEN L Y, WANG Y L, et al. Condition optimizing of electroless copper plating for glass fiber[J]. Materials Protection,2002,35(10):50-52(in Chinese). doi: 10.3969/j.issn.1001-1560.2002.10.023
    [13] XU C J, LIU G L, CHEN H Y, et al. Fabrication of conductive copper-coated glass fibers through electroless plating process[J]. Journal of Materials Science,2014,25(6):2611-2617.
    [14] ZUO J D, CHEN S J, LUO C Y, et al. Preparation of electroless copper coated glass fiber and piezoresistive properties of copper coated glass fiber reinforced plastics[J]. Applied Surface Science,2015,349(15):319-326.
    [15] 左建东, 罗超云, 杨清曼, 等. 玻璃纤维化学镀铜工艺新探[J]. 塑料, 2012, 41(6):54-56.

    ZUO J D, LUO C Y, YANG Q M, et al. New exploration of electroless copper plating technology for glass fibers[J]. Plastics,2012,41(6):54-56(in Chinese).
    [16] 李丽波, 刘波, 吴宝华. 玻璃纤维表面化学镀镍的工艺研究[J]. 稀有金属材料与工程, 2011, 40(2):360-364.

    LI L B, LIU B, WU B H. Research on technology of electroless Ni plating on glass fiber surface[J]. Rare Metal Materials and Engineering,2011,40(2):360-364(in Chinese).
    [17] 段宏基, 郭超, 杨雅琦, 等. 聚丙烯/镀镍玻璃纤维导电复合材料的制备及性能研究[C]//中国化学会会议论文集. 成都: 中国化学会, 2014: 730-732.

    DUAN H J, GUO C, YANG Y Q, et al. Preparation and characterization of polypropylene/nickel coated glass fiber conducive composition[C]//Proceedings of the Meeting of the Chinese Chemical Society. Chengdu: Chinese Chemical Society, 2014: 730-732(in Chinese).
    [18] DUAN H J, ZHAO M J, YANG Y Q, et al. Flexible and conductive PP/EPDM/Ni coated glass fiber composite for efficient electromagnetic interference shielding[J]. Journal of Materials Science,2018,29(12):10329-10336.
    [19] XU Y D, YANG Y Q, YAN D X, et al. Anisotropically conductive polypropylene/nickel coated glass fiber composite via magnetic field inducement[J]. Journal of Materials Science,2017,28(12):9126-9131.
    [20] DUAN H J, YANG J M, YANG Y Q, et al. TiO2 hybrid polypropylene/nickel coated glass fiber conductive composites for highly efficient electromagnetic interference shielding[J]. Journal of Materials Science Materials in Electronics,2016,28(8):1-8.
    [21] 曹鼎, 李芝华. 超声处理化学镀法制备镀银玻璃纤维[J]. 粉末冶金材料科学与工程, 2009, 14(6): 422-426.

    CAO D, LI Z H. Preparation of silver-coated glass fiber by electroless plating with ultrasonic treatment[J]. Materials Science and Engineering of Powder Metallurgy, 2009, 14(6): 422-426(in Chinese).
    [22] 司倩倩, 陈厚和, 张幺玄, 等. 玻璃纤维化学镀银工艺的优化[J]. 电镀与涂饰, 2012, 31(12):25-27. doi: 10.3969/j.issn.1004-227X.2012.12.008

    SI Q Q, CHEN H H, ZHANG Y X, et al. Optimization of electroless silver plating on glass fiber[J]. Electroplating & Finishing,2012,31(12):25-27(in Chinese). doi: 10.3969/j.issn.1004-227X.2012.12.008
    [23] 李金龙, 陈健, 汪庆卫, 等. 化学镀银工艺对玻璃纤维性能影响研究[J]. 化工新型材料, 2017, 45(3):193-195.

    LI J L, CHEN J, WANG Q W, et al. Influence of electroless plating process on the property of glass fiber[J]. New Chemical Materials,2017,45(3):193-195(in Chinese).
    [24] 李祝, 李红, 张志伟. 镀银玻璃纤维的制备及其在环氧树脂中的应用[J]. 电镀与涂饰, 2016, 35(15):788-792.

    LI Z, LI H, ZHANG Z W. Preparation of silver-coated glass fiber and its application in epoxy resin[J]. Electroplating & Finishing,2016,35(15):788-792(in Chinese).
    [25] 雷刚, 杨文彬, 魏明, 等. 玻璃纤维表面化学镀Ni-P合金涂层的研究[J]. 功能材料, 2008, 39(7):1128-1130. doi: 10.3321/j.issn:1001-9731.2008.07.021

    LEI G, YANG W B, WEI M, et al. Study on electroless Ni-P plating of glass fiber[J]. Journal of Functional Materials,2008,39(7):1128-1130(in Chinese). doi: 10.3321/j.issn:1001-9731.2008.07.021
    [26] 李鹏, 黄英, 熊佳, 等. 玻璃纤维化学镀Ni-Cu-P合金的研究[J]. 材料科学与工艺, 2006, 14(6):630-632, 636. doi: 10.3969/j.issn.1005-0299.2006.06.018

    LI P, HUANG Y, XIONG J, et al. Study of electroless Ni-Cu-P alloy plating on the glass fiber[J]. Materials Science and Technology,2006,14(6):630-632, 636(in Chinese). doi: 10.3969/j.issn.1005-0299.2006.06.018
    [27] 吴道伟, 黄英, 苏武, 等. 玻璃纤维化学镀Ni-Fe-Pr-P合金及性能研究[J]. 航空材料学报, 2010, 30(2):64-67.

    WU D W, HUANG Y, SU W, et al. Study on properties of Ni-Fe-Pr-P alloy fabricated by electroless method on surface of glass fiber[J]. Journal of Aeronautical Materials,2010,30(2):64-67(in Chinese).
    [28] 秦秀兰, 黄英, 杜朝锋, 等. 玻璃纤维化学镀Ni-Co-Fe-La-P合金工艺的研究[J]. 稀有金属, 2007, 31(5):631-636. doi: 10.3969/j.issn.0258-7076.2007.05.010

    QIN X L, HUANG Y, DU Z F, et al. Process study on electroless plating of Ni-Co-Fe-La-P alloy on surface of glass fiber[J]. Chinese Journal of Rare Metals,2007,31(5):631-636(in Chinese). doi: 10.3969/j.issn.0258-7076.2007.05.010
    [29] 黄英, 赵利, 时刻, 等. 玻璃纤维化学镀Ni-Fe-W-P合金的研究[J]. 稀有金属材料与工程, 2006, 35(11):1725-1729. doi: 10.3321/j.issn:1002-185X.2006.11.011

    HUANG Y, ZHAO L, SHI K, et al. The study of electroless Ni-Fe-W-P alloy plating on surface of glass fiber[J]. Rare Metal Materials and Engineering,2006,35(11):1725-1729(in Chinese). doi: 10.3321/j.issn:1002-185X.2006.11.011
    [30] 刘扬, 管登高, 胡德豪, 等. 镀Ni-Cu-La-B玻璃纤维对电磁屏蔽复合涂料性能的影响[J]. 安全与电磁兼容, 2019(1):23-25, 56.

    LIU Y, GUAN D G, HU D H, et al. Influence of Ni-Cu-La-B-coated glass fiber on the properties of electromagnetic shielding composite[J]. Safety & EMC,2019(1):23-25, 56(in Chinese).
    [31] HUSSAIN S. Dielectric relaxation of glass particles with conductive nano-coatings[J]. Journal of Physics D: Applied Physics, 2009, 42 (6): 064002.
    [32] LEE J, JUNG B M, LEE S B, et al. FeCoNi coated glass fibers in composite sheets for electromagnetic absorption and shielding behaviors[J]. Applied Surface Science,2017,415(1):99-103.
    [33] 杨晓娟, 王绍斌. 玻璃纤维化学镀的进展[J]. 纺织科技进展, 2008(4):7-8, 14. doi: 10.3969/j.issn.1673-0356.2008.04.003

    YANG X J, WANG S B. Development of electroless Ni-P plating on glass fibers[J]. Progress in Textile Science & Technology,2008(4):7-8, 14(in Chinese). doi: 10.3969/j.issn.1673-0356.2008.04.003
    [34] FANG M H, XIONG X H, HAO Y B, et al. Preparation of highly conductive graphene-coated glass fibers by sol-gel and dip-coating method[J]. Journal of Materials Science & Technology, 2019, 35(9): 1989-1995.
    [35] MOHAN V B, JAYARAMAN K, BHATTACHARYYA D. Fabrication of highly conductive graphene particle-coated fiber yarns using polymeric binders through efficient coating techniques[J]. Advances in Polymer Technology, 2018, 37(8): 3438-3447.
    [36] MORICHE R, JIMENEZ S A, SANCHRZ M, et al. Graphene nanoplatelets coated glass fibre fabrics as strain sensors[J]. Composites Science & Technology,2017,146(7):59-64.
    [37] 刘国强, 石福志, 李耀刚, 等. 石墨烯包覆玻璃纤维复合材料的制备及其电学性能研究[J]. 无机材料学报, 2015, 30(7):763-768. doi: 10.15541/jim20140686

    LIU G Q, SHI F Z, LI Y G, et al. Preparation and electrical properties of graphene coated glass fiber composites[J]. Journal of Inorganic Materials,2015,30(7):763-768(in Chinese). doi: 10.15541/jim20140686
    [38] 刘国强. 导电玻璃纤维的制备与性能研究[D]. 上海: 东华大学, 2015.

    LIU G Q. The preparation and electrical properties of conductive glass fiber[D]. Shanghai: Donghua University, 2015(in Chinese).
    [39] 陆豪. 石墨烯包覆玻璃纤维复合材料的制备[D]. 济南: 济南大学, 2017.

    LU H. Preparation of graphene oxide coated glass fiber reinforced composites[D]. Jinan: University of Jinan, 2017(in Chinese).
    [40] 方明赫. 石墨烯导电复合结构的制备及性能调控[D]. 合肥: 中国科学技术大学, 2019.

    FANG M H. Preparation and property regulation of graphene conductive composite structure[D]. Hefei: University of Science and Technology of China, 2019(in Chinese).
    [41] 郭宏伟, 莫祖学, 沈一丁, 等. 玻璃纤维表面纳米改性的研究进展[J]. 陶瓷学报, 2015, 36(6):569-577.

    GUO H W, MO Z X, SHEN Y D, et al. The research progress on the treatment of glass fiber surface by nanomaterial[J]. Journal of Ceramics,2015,36(6):569-577(in Chinese).
    [42] JIN J, ZHANG L, CHEN W, et al. Synthesis of glass fiber-multiwall carbon nanotube hybrid structures for high-performance conductive composites[J]. Polymer Composites,2013,34(8):1313-1320. doi: 10.1002/pc.22544
    [43] HE D L, FAN B H, ZHAO H, et al. Design of electrically conductive structural composites by modulating aligned CVD-grown carbon nanotube length on glass fibers[J]. ACS Applied Materials & Interfaces,2017,9(3):2948-2958.
    [44] PARK K, LEE S, KIM C, et al. Application of MWNT-added glass fabric/epoxy composites to electromagnetic wave shielding enclosures[J]. Composite Structures, 2007, 81(3): 401-406.
    [45] LAZAROS T, MARTIN K, FRANK S, et al. The interphase microstructure and electrical properties of glass fibers covalently and non-covalently bonded with multiwall carbon nanotubes[J]. Carbon,2014,73(7):310-324.
    [46] 苏丹华. 静电吸附玻璃纤维/碳纳米管复合增强体改性聚合物复合材料[D]. 上海: 华东理工大学, 2012.

    SU D H. Electrostatic assembled glass fiber/multiwall carbon nanotubes hybrids reinforced polymer composites[D]. Shanghai: East China University of Science and Technology, 2012(in Chinese).
    [47] ALCANIZ M J, LOZANO C D, HAHN K, et al. Characterisation of conductive CVD carbon-glass fibres[J]. Carbon,2004,42(11):2349-2351. doi: 10.1016/j.carbon.2004.04.036
    [48] JAYATISSA A H, DUTTA A K. C60 thin films for optical fiber coating applications[C]//Proceeding SPIE 5593, Nanosensing: Materials and Devices. Pennsylvania: SPIE, 2004.
    [49] DOWLING D P, DONNELLY K, O"BRIEN T P, et al. Application of diamond-like carbon films as hermetic coatings on optical fibres[J]. Diamond & Related Materials,1996,5(3-5):492-495.
    [50] GAO X D, WANG Y J, ZHANG Z H, et al. Conductive nano-carbon coating on silica by pyrolysis of polyethylene[J]. Materials Letters,2019,255:126567. doi: 10.1016/j.matlet.2019.126567
    [51] 杨卫民, 高晓东, 张政和, 等. 一种导电碳纳米涂层玻璃纤维制备方法及装置: 中国专利, CN110526591A[P]. 2019-12-03.

    YANG W M, GAO X D, ZHANG Z H, et al. The invention relates to a method and a device for preparing conductive carbon nanometer coated glass fiber: Chinese patent, CN110526591A[P]. 2019-12-03(in Chinese).
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出版历程
  • 收稿日期:  2020-06-28
  • 录用日期:  2020-08-13
  • 网络出版日期:  2020-08-26
  • 刊出日期:  2021-01-15

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