专题:2019年科技回眸

2019年先进纤维复合材料研发热点回眸

  • 徐坚 ,
  • 王亚会 ,
  • 李林洁 ,
  • 聂铭歧 ,
  • 王熙大 ,
  • 季俊娜 ,
  • 朱才镇 ,
  • 刘瑞刚
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  • 1. 深圳大学先进低维材料基因工程研究院, 深圳 518061;
    2. 国家新材料产业发展战略咨询委员会天津研究院, 天津 300042;
    3. 中国科学院化学研究所, 北京 100190
徐坚,研究员,研究方向为智能聚合物与仿生材料、高性能与功能聚合物,电子信箱:jxu@iccas.an.cn

收稿日期: 2019-12-26

  修回日期: 2020-01-05

  网络出版日期: 2020-02-29

基金资助

国家自然科学基金项目(51673117,51973118);广东省重点领域研发计划项目(2019B010929002,2019B010941001);深圳市知识创新计划项目(JCYJ20170818093832350,JCYJ20180507184711069)

Hot topics of advanced fiber reinforced composites in 2019

  • XU Jian ,
  • WANG Yahui ,
  • LI Linhao ,
  • NIE Mingqi ,
  • WANG Xida ,
  • JI Junna ,
  • ZHU Caizhen ,
  • LIU Ruigang
Expand
  • 1. Low-dimensional Materials Genome Initiative, Shenzhen University, Shenzhen 518061, China;
    2. Tianjin Institute, National Advisory Committee on New Materials Industry Development Strategy, Tianjin 300042, China;
    3. Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China

Received date: 2019-12-26

  Revised date: 2020-01-05

  Online published: 2020-02-29

摘要

高性能纤维复合材料作为典型的先进纤维复合材料,无论在军用还是民用领域都拥有极为广泛的应用前景,近年来已成为世界各国研究的热点和重点。通过回顾2019年全球范围内高性能纤维复合材料在新产品、新工艺以及新市场等方面取得的科技进展,对美国、日本、欧洲和中国高性能纤维复合材料的研究重点进行了总结并分析了未来高性能纤维复合材料的发展趋势。

本文引用格式

徐坚 , 王亚会 , 李林洁 , 聂铭歧 , 王熙大 , 季俊娜 , 朱才镇 , 刘瑞刚 . 2019年先进纤维复合材料研发热点回眸[J]. 科技导报, 2020 , 38(1) : 82 -92 . DOI: 10.3981/j.issn.1000-7857.2020.01.007

Abstract

As a typical dual-use material, advanced fiber reinforced composites have drawn attention around the world in recent years due to their wide range of application prospects. By reviewing the progress on new products, new processing and new markets of advanced fiber-reinforced composites in the world in 2019, hot research topics of advanced fiber composite materials in the United States, Japan, Europe and China are summarized and the development trends of advanced fiber composite materials in the future are prospected.

参考文献

[1] 孙晓婷, 郭亚. 高性能纤维的性能及应用[J]. 成都纺织高等专科学校学报, 2017, 34(2):216-219.
[2] 郭云竹.高性能纤维及其复合材料的研究与应用[J]. 纤维复合材料, 2017(1):7-10.
[3] 罗益锋. 新形势下高性能纤维与复合材料的主攻方向与新进展[J]. 高科技纤维与应用, 2019(5):1-22.
[4] 肖文莹, 郭万涛, 李想. 超高分子量聚乙烯纤维增强防弹复合材料研究进展[J]. 材料开发与应用, 2019(2):131-138.
[5] Keller J. SOCOM is field testing lightweight body armor originally developed for its ‘iron man’ suit[EB/OL].[2019-12-25]. https://www.military.com/daily-news/2019/11/13/socom-field-testing-lightweight-body-armor-originallydeveloped-its-iron-man-suit.html.
[6] 尚金龙, 李思海, 陈贻明. 纤维增强塑料在航空航天领域中的应用[J]. 塑料工业, 2019(1):148-151.
[7] Lindner D. AFRL, university partners make a push in printable composites[EB/OL].[2019-12-25]. https://www.wpafb.af.mil/News/Article-Display/Article/1787657/afrluniversity-partners-make-a-push-in-printable-composites/.
[8] Rush S. OceanGate to build two new submersibles for deep ocean exploration, research and commercial operations to titanic depths and beyond[EB/OL].[2019-12-25]. https://www.oceangate.com/news-and-media/press-releases.html.
[9] General Motors Company. GMC CarbonProTM delivers innovation and durability where it counts[EB/OL].[2019-12-25]. https://www.gmc.com/gmc-life/news/carbonpro-delivers-innovation-durability#carbonpro.
[10] Rahman M M, Puthirath A B, Adumbumkulath A, et al. Fiber reinforced layered dielectric nanocomposite[J]. Advanced Functional Materials, 2019, 29(28):1900056.
[11] 刘越. 碳纤维增强复合材料性能影响因素的探讨[J]. 高科技纤维与应用, 2003, 28(2):29-33.
[12] Chang H, Luo J, Liu H C, et al. Carbon fibers from polyacrylonitrile/cellulose nanocrystal nanocomposite fibers[J]. Carbon, 2019, doi:10.1016/j.carbon.2019.01.045.
[13] 赵永霞, 祝丽娟. 世界纺织版图与产业发展新格局(一)——日本篇(上)[J]. 纺织导报, 2019(4):35-38.
[14] Toray Industries, Inc. Toray Creates World's First Porous Carbon Fiber with Continuous Pore StructureNew material could benefit environment by enhancing performance of advanced gas separation membranes[EB/OL].[2019-12-25]. https://www.toray.com/news/environment/detail.html?key=32652CBCD6A7B976492584B6000742-C3.
[15] Teijin Limited. Teijin develops highly heat-and impactresistant prepreg as carbon fiber intermediate material for aerospace applications[EB/OL].[2019-12-25]. https://www.teijin.co.jp/news/2019/20190304_5224.html.
[16] 東レ株式会社. 航空機向け真空圧成形プリプレグを 開発-オートクレーブを使用しない実物大部材成形で高品質を実証-[EB/OL].[2019-12-25]. https://cs2.toray.co.jp/news/toray/newsrrs01.nsf/0/B83FB49704A7C-552492583DF002827DF.
[17] Toray Advanced Composites. Toray announce new superior structural resin system for high-end motorsport market[EB/OL].[2019-12-25]. https://www.toraytac.com/company/news/2019/11/13/Toray-Announce-New-Superior-Structural-Resin-System-for-High_End-MotorsportMarket.
[18] Teijin Limited. Teijin develops extra-light automotive side-door module made of advanced multi-material composites[EB/OL].[2019-12-25]. https://www.teijin.com/news/2019/20190306_2559.html.
[19] 王庄林, 柳河敬田, 吉田修. 日本安全住宅建筑技术动向[J]. 住宅与房地产, 2017(2):62-69.
[20] 大成建設株式会社.炭素繊維強化プラスチック部材「T-CFRP Beam(FR)」を開発·適用[EB/OL].[2019-12-25]. https://www.taisei.co.jp/about_us/wn/2019/19100-9_4805.html.
[21] 豊田章.自工会、CFRP適正処理研究を開始炭素繊維の燃焼メカニズム把握[EB/OL].[2019-12-25].https://www.netdenjd.com/articles/-/183446.
[22] 日本経済新聞.炭素繊維、再利用で連携日仏、航空機向け技術開発[EB/OL].[2019-12-25]. https://www.nikkei.com/article/DGKKZO50112700T20C19A9NN1000/
[23] Briggs Automotive Company.Introducing Mono R-Higher-performance, lighter, more advanced GEN2 Mono[EB/OL].[2019-12-25]. http://www.bac-mono.com/news.php?newsID=186.
[24] Chomarat. Le renfort carbone C-PLYTM de Chomarat équipe les yachts hautes performances de course-croisière d'Arcona Yachts[EB/OL].[2019-12-25]. https://chomarat.com/le-renfort-carbone-c-ply-de-chomaratequipe-les-yachts-hautes-performances-de-coursecroisiere-darcona-yachts.
[25] Schludi C. Carbon fiber-based battery enclosures support electromobility[EB/OL].[2019-12-25]. https://www.sglcarbon.com/en/for-a-smarter-world/carbon-fiberbased-battery-enclosures-support-electromobility/.
[26] Pütz A. The winning team of the hyperloop competition counts on carbon fiber reinforced plastic[EB/OL].[2019-12-25]. https://www.sglcarbon.com/en/company/press/press-information/press-report/the-winning-team-of-thehyperloop-competition-counts-on-carbon-fiber-reinforced-plastic.
[27] ELG Carbon Fibre. Britannia boat cradles manufactured with ELG recycled carbon fiber[EB/OL].[2019-12-25]. https://www.compositesworld.com/news/britannia-boatcradles-manufactured-with-elg-recycled-carbon-fiber.
[28] Davison K.World's first carbon fibre rail bogie unveiled at ‘Unlocking Innovation’ rail conference at the University of Huddersfield[EB/OL].[2019-12-25]. http://www.elgcf.com/news/worlds-first-carbon-fibre-rail-bogie-unveiled-at-unlocking-innovation-rail-conference-at-theuniversity-of-huddersfield.
[29] 曹海琳, 晏义伍, 岳利培, 等. 高性能纤维技术丛书:玄武岩纤维[M]. 北京:国防工业出版社, 2017.
[30] Anisoprint. 俄罗斯Anisoprint:中国需要复合纤维3D打印技术[EB/OL].[2019-12-25]. http://www.mw35.com/Article/NewsItem/84559.
[31] Mason H. Lipex Engineering to build basalt fiber production plant in Russia[EB/OL].[2019-12-25].https://www.compositesworld.com/news/lipex-engineering-to-buildbasalt-fiber-production-plant-in-russia.
[32] SGL Carbon. SGL Carbon enters into partnership with the UK's National Composites Centre[EB/OL].[2019-12-25]. https://www.sglcarbon.com/en/company/press/press-information/press-report/sgl-carbon-enters-intopartnership-with-the-uks-national-composites-centre/
[33] SGL Carbon. SGL Carbon and Solvay collaborate to develop highly-competitive advanced carbon fiber composites for aerospace primary structures[EB/OL].[2019-12-25].https://www.sglcarbon.com/en/company/press/pressinformation/press-report/sgl-carbon-and-solvay-collaborate-to-develop-highly-competitive-advanced-carbonfiber-composites-for/.
[34] Anguita J V, Smith C T G, Stute T, et al. Dimensionally and environmentally ultra-stable polymer composites reinforced with carbon fibres[J]. Nature Materials, 2019, doi:10.1038/s41563-019-0565-3.
[35] Liao X, Dulle M, Silva J M S, et al. High strength in combination with high toughness in robust and sustainable polymeric materials[J]. Science, 2019, 366(6471):1376-1379.
[36] 中复神鹰. 中复神鹰T1000级超高强度碳纤维工程化关键技术通过鉴定[EB/OL].[2019-12-25]. http://www.zfsycf.com.cn/news_content.php?articleid=432.
[37] 彭源.世界首条碳纤维复合导线特高压工程正式带负荷运行[EB/OL].[2019-12-25]. http://www.xinhuanet.com/fortune/2019-12/13/c_1125344246.htm.
[38] 裴道彰, 徐金波.中国首辆氢能碳纤维车身乘用车武汉诞生[EB/OL].[2019-12-25]. http://www.chinanews.com/cj/2019/03-20/8785619.shtml.
[39] 光威复材.光威复材向航空工业直升机所交付AV500无人机[EB/OL].[2019-12-25]. http://www.chinacompositesexpo.com/cn/news-detail-246-8938.html.
[40] 刘瑞刚, 徐坚, 国产高性能聚丙烯腈基碳纤维制备技术研究进展[J]. 科技导报, 2018, 36(19):32-42.
[41] 徐坚, 刘瑞刚, 高性能纤维基本科学原理[M]. 北京:国防工业出版社, 2018.
[42] 张泽, 徐卫军, 康宏亮, 等, 高性能聚丙烯腈基碳纤维制备技术几点思考[J]. 纺织学报, 2019, 40(12):152-161.
[43] Lu J S, Li W W, Kang H L, et al. Microstructure and properties of polyacrylonitrile based carbon fibers[J]. Polymer Testing, 2020, 81:106267.
[44] Li W W, Kang H L, Xu J, et al. Effects of ultra-high temperature treatment on the microstructure of carbon fibers[J]. Chinese Journal of Polymer Science, 2017, doi:10.1007/s10118-017-1922-9
[45] Li W W, Kang H L, Xu J, et al. Microstructures of highstrength high-modulus carbon fibers and high-modulus carbon fibers[J]. Acta Polymerica Sinica, 2018, 49(3):380-388.
[46] 陈曦.投资35亿元的玄武岩纤维产业化基地落户德阳罗江[EB/OL].[2019-12-25]. http://sc.people.com.cn/n2/2019/0329/c379469-32793001.html.
[47] 江苏化工网.内蒙古国产化对位芳纶生产线顺利投产[EB/OL].[2019-12-25]. http://jschemnet.cn/news_detail.asp?id=186069.
[48] Yang B, Wang L, Zhang M, et al. Timesaving, high-efficiency approaches to fabricate aramid nanofibers[J]. ACS Nano, 2019, 13(7):7886-7897.
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