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织物/聚脲柔性复合材料抗爆性能研究进展 被引量:2

Anti-explosive Performance of Fabric/Polyurea(FPU)Soft Composites:a Review
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摘要 织物/聚脲柔性复合材料因轻质和优异的防爆性能而成为个体及公共建筑材料防爆领域的关键材料。本文阐述了爆炸载荷的传播机制及破坏机理,探讨了爆炸冲击载荷下织物/聚脲柔性复合材料的作用机制及吸能方式,总结了织物增强体和聚脲分别对防爆复合材料性能的影响;同时,在现有研究基础上指出了目前存在的问题并提出建议,为今后新型轻质高强织物/聚脲柔性复合材料的研究提供参考依据及前沿思路。 Owing to the light weight and excellent response to explosive impact,flexible fabric/polyurea(FPU)composites have played a key role in the field of blast mitigation for personally public buildings.This paper describes how explosive shock waves propagate and cause damage,discusses how FPU composites respond to and dissipate these waves,and summarizes the effects of fabric reinforcement and polyurea on the performance of blast-resistant composites.Shortcomings in the above research are highlighted and suggestions are made based on recent research,providing a starting point for further research on the lastest fabric/polyurea(FPU)soft composites with a lighter weight and higher strength.
作者 郑成燕 张典堂 梁燕民 钱坤 ZHENG Chengyan;ZHANG Diantang;LIANG Yanmin;QIAN Kun(Key Laboratory of Eco-textiles,Ministry of Education,Jiangnan University,Wuxi 214122,China;Shanghai Composite Material Technology Co.,Ltd.,Shanghai 201112,China)
出处 《材料导报》 EI CAS CSCD 北大核心 2021年第23期23205-23211,共7页 Materials Reports
基金 国家重点研发项目(2018YFC0810306) 江南大学研究生实践创新计划(JNSJ19_004)。
关键词 织物/聚脲柔性复合材料 破片侵彻 防爆复合材料 爆炸冲击波 FPU composites fragments pentration blast-resistant composites explosive shock wave
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  • 1易长平,卢文波.爆破振动对砂浆锚杆的影响研究[J].岩土力学,2006,27(8):1312-1316. 被引量:23
  • 2Li G, Zhang C, Wang Y, et al. Interface correlation and toughnessmatching of phosphoric acid functionalized Kevlar fiber and epoxymatrix for filament winding composites[ J]. Composites Science andTechnology, 2008, 68(15); 3208-3214.
  • 3Seong-Kyu JANG, Dong-Myoung Kim, Yong-Won RA. Productionmethod for aramid prepreg foriibre-reinforced composite material[P].Korea: WO 2012148063 Al,2012.
  • 4Peter Clifford Hodgson. Coupling of reinforcing fibres to resins incurable composites[ P ]. W02002040577 Al ,2002.
  • 5Menon N,Blum F D,Dharani L R. Use of titanate coupling agentsin kevlar-phenolic composites [ J ]. Journal of applied polymerscience, 1994’ 54(1) ; 113-123.
  • 6Day R J, Hewson K D, Lovell P A. Surface modification and itseffect on the interfacial properties of model aramid-fibre/epoxy com-posites [ J ].Composites science and technology, 2002,62(2):153-166.
  • 7Ehlert G J, Sodano H A. Zinc oxide nanowire interphase forenhanced interfacial strength in lightweight polymer fiber composites[J]. ACS applied materials & interfaces,2009, 1(8) : 1827-1833.
  • 8张志谦,张国定.复合材料界面和界面优化设计-第2版[M].天津:天津大学出版社,2002.
  • 9Abadyan M, Bagheri R, Kouchakzadeh M A. Fracture toughness ofa hybrid-rubber-modified epoxy. I. Synergistic toughening [ J ]. Jour-nal of Applied Polymer Science, 2012,125(3) : 2467-2475.
  • 10Wang Y,Zhang B,Ye J. Microstructures and toughening mechanismsof organoclay/polyethersulphone/epoxy hybrid nanocomposites [ J ].Materials Science and Engineering ; A, 2011,528 ( 27) : 7999-8005.

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