留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

船舶用阻燃树脂基体复合材料研究进展

刘翔 周恒 郭颖 赵晓娟 杨瑞瑞 李桂阳 李伟明 李想 郭万涛 黄伟 赵彤

刘翔, 周恒, 郭颖, 赵晓娟, 杨瑞瑞, 李桂阳, 李伟明, 李想, 郭万涛, 黄伟, 赵彤. 船舶用阻燃树脂基体复合材料研究进展[J]. 材料开发与应用, 2023, 38(4): 50-60.
引用本文: 刘翔, 周恒, 郭颖, 赵晓娟, 杨瑞瑞, 李桂阳, 李伟明, 李想, 郭万涛, 黄伟, 赵彤. 船舶用阻燃树脂基体复合材料研究进展[J]. 材料开发与应用, 2023, 38(4): 50-60.
LIU Xiang, ZHOU Heng, GUO Ying, ZHAO Xiaojuan, YANG Ruirui, LI Guiyang, LI Weiming, LI Xiang, GUO Wantao, HUANG Wei, ZHAO Tong. Research Progress of Flame Retardant Resin Matrix Composites for Ships[J]. Development and Application of Materials, 2023, 38(4): 50-60.
Citation: LIU Xiang, ZHOU Heng, GUO Ying, ZHAO Xiaojuan, YANG Ruirui, LI Guiyang, LI Weiming, LI Xiang, GUO Wantao, HUANG Wei, ZHAO Tong. Research Progress of Flame Retardant Resin Matrix Composites for Ships[J]. Development and Application of Materials, 2023, 38(4): 50-60.

船舶用阻燃树脂基体复合材料研究进展

详细信息
    作者简介:

    刘翔,男,1992年生,工程师,主要从事耐高温抗烧蚀树脂基体及复合材料的研发与应用。E-mail:liuxiang@iccas.ac.cn

  • 中图分类号: TB332

Research Progress of Flame Retardant Resin Matrix Composites for Ships

  • 摘要: 复合材料的阻燃性能限制了其在船舶结构中的应用,树脂基体复合材料阻燃性能的好坏主要取决于树脂本身的阻燃性能。作者分别对复合材料中常用的三类树脂基体进行了总结研究:乙烯基环氧树脂在船舶领域已得到了广泛应用,但在某些要求阻燃的场合,乙烯基环氧树脂的应用受限。工业界和学术界针对阻燃乙烯基环氧树脂开展了大量工作,通过加入含磷笼型聚倍半硅氧烷(POSS)阻燃剂,显著提高了其阻燃性能,耐热性能和力学性能也有所提高;酚醛树脂是一种具有高阻燃性能的树脂类别,采用多种浸渍工艺将其制备成玻璃纤维或碳纤维增强预浸料,经过模压或热压罐等工艺方式可制备出力学性能良好、阻燃性能优异的复合材料产品。采用发泡工艺制备玻璃纤维增强酚醛发泡复合材料,其在更加轻量化的同时,仍具有良好的力学性能和阻燃性能;邻苯二甲腈树脂同样具有优异的阻燃性能,玻璃纤维、碳纤维增强的邻苯二甲腈复合材料热释放速率满足美军MIL-STD-2031中潜艇材料测定标准,邻苯二甲腈玻璃纤维复合材料的烟密度也远低于常见树脂复合材料的。阻燃乙烯基环氧树脂、酚醛树脂和氰基树脂优异的阻燃性能和良好的力学性能使其在水面舰艇和潜艇部件上具有广阔的应用前景。

     

  • [1] 王犇. 复合材料的应用与展望[J]. 中国新技术新产品, 2018(6):40-41.
    [2] 王旭东. 土木建筑工程中纤维复合材料的应用[J]. 合成材料老化与应用, 2022, 51(4):130-132.
    [3] 蔚凤生, 何瑞, 廉伟. 民机复合材料成本探讨[J]. 大飞机, 2021(12):14-19.
    [4] JOHNSON R J, ARUMUGAPRABU V, KO T J. Mechanical property, wear characteristics, machining and moisture absorption studies on vinyl ester compositesa review[J]. Silicon, 2019, 11(5):2455-2470.
    [5] YANG S H, FANG H, LI H, et al. Synthesis of tung oil-based vinyl ester resin and its application for anticorrosion coatings[J]. Progress in Organic Coatings, 2022, 170:106967.
    [6] PEARCE P J, SIEBERT A R, EGAN D R, et al. Elastomer-modified vinyl esters as structural adhesives[J]. The Journal of Adhesion, 1995, 49(3-4):245-259.
    [7] DEV S, SHAH P N, ZHANG Y P, et al. Synthesis and mechanical properties of flame retardant vinyl ester resin for structural composites[J]. Polymer, 2017, 133:20-29.
    [8] SORATHIA U, NESS J, BLUM M. Fire safety of co-mposites in the US navy[J]. Composites Part A:Applied Science and Manufacturing, 1999, 30(5):707-713.
    [9] KANDOLA B K, EBDON J R, ZHOU C. Develop-ment of vinyl ester resins with improved flame retardant properties for structural marine applications[J]. Reactive and Functional Polymers, 2018, 129:111-122.
    [10] 王福生, 寇雅芳, 董宪伟, 等. 阻燃剂甲基膦酸二甲酯对褐煤的阻燃效果研究[J]. 煤矿安全, 2019, 50(9):46-50.
    [11] XU Z H, ZHAN J, XU Z R, et al. A bridge-linked phosphorus-containing flame retardant for endowing vinyl ester resin with low fire hazard[J]. Molecules, 2022, 27(24):8783.
    [12] ZHANG F Q, ZHAO Y Z, XU Y J, et al. Flame retardation of vinyl ester resins and their glass fiber reinforced composites via liquid DOPO-containing 1-vinylimidazole salts[J]. Composites Part B:Engineering, 2022, 234:109697.
    [13] SHI Y Q, FU T, XU Y J, et al. Novel phosphorus-containing halogen-free ionic liquid toward fire safety epoxy resin with well-balanced comprehensive performance[J]. Chemical Engineering Journal, 2018, 354:208-219.
    [14] 易岚, 陈俊, 叶华. 含硅阻燃剂的研究进展[J]. 化工新型材料, 2009, 37(1):8-10.
    [15] 宋远超, 陈国文, 姚慧玲, 等. 硅系阻燃剂作用机理及应用进展[J]. 有机硅材料, 2018, 32(6):496-500.
    [16] 王从焕, 吕素芳, 蒋剑雄, 等. 多面体低聚倍半硅氧烷材料改性硅树脂的研究进展[J]. 有机硅材料, 2021, 35(1):66-70.
    [17] XU Y Y, LONG J, ZHANG R Z, et al. Greatly improving thermal stability of silicone resins by modification with POSS[J]. Polymer Degradation and Stability, 2020, 174:109082.
    [18] ZHANG W W, ZHANG W C, QIN Z L, et al. Mechanical and flame-retardant properties and thermal decomposition of vinyl ester resin modified by different phenyl silsesquioxanes[J]. Polymers for Advanced Technologies, 2020, 31(8):1836-1846.
    [19] 王利萍, 杨云峰, 王俊峰, 等. 三聚氰胺基阻燃剂的研究进展[J]. 中国塑料, 2014, 28(1):12-16.
    [20] 崔明. 三聚氰胺基阻燃剂的应用研究进展[J]. 精细与专用化学品, 2021, 29(9):50-53.
    [21] 党力, 吕智慧. 无机阻燃剂的研究进展[J]. 中国塑料, 2018, 32(9):1-8.
    [22] 白静兰, 孙立婧, 闫莉, 等. 无机阻燃剂协同阻燃聚合物研究进展[J]. 高分子通报, 2014(11):71-76.
    [23] YANG S, WANG J, HUO S Q, et al. Synthesis of a phosphorus/nitrogen-containing compound based on maleimide and cyclotriphosphazene and its flameretardant mechanism on epoxy resin[J]. Polymer Degradation and Stability, 2016, 126:9-16.
    [24] DING Y K, YUAN Z L, WANG J C. Synthesis of a phosphorus-containing trisilanol POSS and its application in RTV composites[J]. e-Polymers, 2018, 18(3):237-245.
    [25] 韩旭. 耐高温阻燃低毒树脂体系的研究[D]. 镇江:江苏大学, 2021.
    [26] ZENG B R, LIU Y Z, YANG L, et al. Flame ret-ardant epoxy resin based on organic titanate and polyhedral oligomeric silsesquioxane-containing additives with synergistic effects[J]. RSC Advances, 2017, 7(42):26082-26088.
    [27] 欧阳兆辉, 伍林, 曹淑超, 等. 用作耐热性材料的酚醛树脂研究动态[J]. 化学与黏合, 2005, 27(4):229-232.
    [28] LI X L. Modification progresses of phenolic resin[J]. Plastics, 2004, 33(5):39.
    [29] 陈海龙, 杨学锋, 王守仁, 等. 改性酚醛树脂陶瓷摩擦材料的摩擦磨损性能[J]. 材料工程, 2019, 47(6):108-113.
    [30] 黄赤, 秦岩, 黄志雄, 等. 酚醛基烧蚀材料改性研究进展[J]. 武汉理工大学学报, 2014, 36(8):37-43.
    [31] XIE J, SUN H, YANG Y C, et al. Preparation of high-toughness lignin phenolic resin biomaterials based via polybutylene succinate molecular intercalat-ion[J]. International Journal of Molecular Sciences, 2023, 24(7):6418.
    [32] YANG X, ZHI M Y, LI Y C, et al. Improved flame retardancy and smoke suppression properties of phenolic resin by incorporating MoO3 particles[J]. High Performance Polymers, 2023:095400832311533.
    [33] 卢杰, 杨中甲, 顾轶卓, 等. 玻璃纤维增强体形式对酚醛泡沫性能的影响[J]. 复合材料学报, 2014, 31(6):1394-1401.
    [34] JOHN B, NAIR C R. Phenolic syntactic foams:low-density composites for structural and thermostructural applications[J]. Cellular Polymers, 2022, 41(5):208-227.
    [35] 孟凡帅, 卢海超, 刘闯, 等. 高阻燃性酚醛发泡材料在动车组上的应用[J]. 中国新技术新产品, 2018(12):23-27.
    [36] 杜瑾宇, 金宇杭, 高婵, 等. 耐高温邻苯二甲腈树脂研究进展[J]. 高分子通报, 2022(4):38-44.
    [37] ZHOU H, BADASHAH A, LUO Z H, et al. Preparation and property comparison of ortho, meta, and Para autocatalytic phthalonitrile compounds with amino group[J]. Polymers for Advanced Technologies, 2011, 22(10):1459-1465.
    [38] ZHANG S, WU M J, RONG J X, et al. Synthesis and characterization of pyrimidine-based novel phthalonitrile resins with excellent processing performance and high glass transition temperature[J]. ChemistrySelect, 2023, 8(13):e202204876.
    [39] SUN B G, SHI H Q, YANG K X, et al. Effects of 3-aminophenylacetylene on mechanical properties at elevated temperatures of carbon fiber/phthalonitrile composites[J]. Composites Communications, 2020, 18:55-61.
    [40] SASTRI S B, ARMISTEAD J P, KELLER T M, et al. Flammability characteristics of phthalonitrile composites[C]//Proceedings of the 42nd International SAMPE Symposium and Exhibition on Evolving Technologies for the Competitive Edge. Anaheim, 1997.
    [41] VAN D P, STRAIT L H, SHAFFER R, et al. Characterization of phthalonitrile resin[C]//Proceedings of the 32nd International SAMPE Technical Confe-rence. Boston, 2000.
    [42] HU J H, WU D M, LU D K, et al. Study on thermal behaviors of a novel cruciform amide-containing phthalonitrile monomer[J]. Designed Monomers and Polymers, 2015, 18(7):620-626.
    [43] WANG G X, GUO Y, HAN Y E, et al. Enhanced properties of phthalonitrile resins reinforced by novel phthalonitrile-terminated polyaryl ether nitrile containing fluorene group[J]. High Performance Polymers, 2020, 32(1):3-11.
    [44] 郑劲东. 舰船用新型耐高温阻燃结构材料:聚邻苯二甲腈复合材料[J]. 材料导报, 2002, 16(10):63-66.
    [45] SASTRI S B, ARMISTEAD J P, KELLER T M, et al. Phthalonitrile-glass fabric composites[J]. Polymer Composites, 1997, 18(1):48-54.
    [46] 陈兴刚, 王亚凤, 桑晓明, 等. 耐高温阻燃聚苯腈树脂的制备及性能[J]. 高分子材料科学与工程, 2019, 35(5):129-135.
    [47] LASKOSKI M, KELLER T M, RICKS-LASKOSKI H L, et al. Improved synthesis of oligomeric sulfone-based phthalonitriles[J]. Macromolecular Chemistry and Physics, 2015, 216(17):1808-1815.
    [48] DERRADJI M, ZEGAOUI A, XU Y L, et al. Toward advanced gamma rays radiation resistance and shielding efficiency with phthalonitrile resins and composites[J]. Nuclear Instruments and Methods in Physics Research Section B:Beam Interactions With Materials and Atoms, 2018, 421:13-17.
    [49] DONG J H, SANG X M, YIN W H, et al. Prepara-tion of fluorinated epoxy-phthalonitrile resins with excellent thermal stability and low dielectric constant[J]. Journal of Applied Polymer Science, 2023, 140(12):e53641.
  • 加载中
计量
  • 文章访问数:  68
  • HTML全文浏览量:  10
  • PDF下载量:  21
  • 被引次数: 0
出版历程
  • 收稿日期:  2023-04-27
  • 网络出版日期:  2023-09-13

目录

    /

    返回文章
    返回