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Enhancement of the cryogenic-interfacial-strength of carbon fiber composites by chemical grafting of graphene oxide/attapulgite onT300

机译:通过化学接枝石墨烯氧化物/乙烯酸盐ont300的化学接枝增强碳纤维复合材料的低温界面强度

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摘要

A mismatch between the expansion coefficients of carbon fiber (CF, T300) and resin causes thermal deterioration at the interface of composite cryotanks. This study presents an effective method to enhance the cryogenic interfacial properties of a T300/epoxy (EP) composite, in which graphene oxide (GO)/attapulgite (ATP) hierarchical structures are chemically grafted onto the surface of T300. GO and ATP were sequentially assembled on the T300 surface, which changed the morphology of T300 and optimized the interfacial wettability of T300/EP. Surface topography and chemical bonding of grafted T300 fibers (T300-GO-ATP) were evaluated by SEM and XPS, respectively. Considering the functioning conditions of composite cryotanks, three cryogenic interfacial testing conditions were designed for the T300-GO-ATP/EP composites: -196 degrees C, cryogenic cycling (from RT to -196 degrees C), and immersion in liquid nitrogen (LN2). The interfacial shear strength (IFSS) of T300-GO-ATP/EP composite at -196 degrees C was 88.3 MPa, 53.1% stronger than that of T300/EP (57.6 MPa). Likewise, the IFSS of T300-GO-ATP/EP composites was tested under cryogenic cycling/immersion in LN2, which increased remarkably comparing to those of T300/EP under the same conditions. Results shows that GO/ATP suppress interfacial cracking and enhances the interfacial bonding of T300/EP at cryogenic temperatures through chemical bonding and nanointerlocking.
机译:碳纤维(CF,T300)和树脂的膨胀系数不匹配会导致复合低温箱界面的热劣化。本研究提出了一种提高T300/环氧树脂(EP)复合材料低温界面性能的有效方法,在T300表面化学接枝氧化石墨烯(GO)/凹凸棒土(ATP)层状结构。GO和ATP相继组装在T300表面,改变了T300的形貌,优化了T300/EP的界面润湿性。分别用SEM和XPS对T300接枝纤维(T300-GO-ATP)的表面形貌和化学键合进行了评价。考虑到复合低温箱的运行条件,T300-GO-ATP/EP复合材料设计了三种低温界面试验条件:-196摄氏度、低温循环(从RT到-196摄氏度)和液氮浸泡(LN2)。T300-GO-ATP/EP复合材料在-196℃下的界面剪切强度(IFSS)为88.3MPa,比T300/EP(57.6MPa)高53.1%。同样,T300-GO-ATP/EP复合材料的IFSS在低温循环/浸入液氮中进行了测试,与相同条件下的T300/EP相比,其IFSS显著增加。结果表明,GO/ATP通过化学键合和纳米互锁,抑制了T300/EP在低温下的界面开裂,增强了其界面结合。

著录项

  • 来源
    《Polymer Composites》 |2020年第12期|共10页
  • 作者单位

    Harbin Inst Technol Natl Key Lab Sci &

    Technol Adv Composites Special Harbin 150080 Peoples R China;

    Harbin Inst Technol Natl Key Lab Sci &

    Technol Adv Composites Special Harbin 150080 Peoples R China;

    Harbin Inst Technol Natl Key Lab Sci &

    Technol Adv Composites Special Harbin 150080 Peoples R China;

    Harbin Inst Technol Natl Key Lab Sci &

    Technol Adv Composites Special Harbin 150080 Peoples R China;

    Harbin Inst Technol Natl Key Lab Sci &

    Technol Adv Composites Special Harbin 150080 Peoples R China;

    Heilongjiang Univ Sci &

    Technol Sch Comp &

    Informat Engn Harbin Peoples R China;

    Shanghai Composites Sci &

    Technol Co Ltd Shanghai Peoples R China;

    China Aerosp Sci &

    Technol Corp Shanghai Aerosp Syst Engn Res Inst Shanghai Peoples R China;

    Harbin Inst Technol Natl Key Lab Sci &

    Technol Adv Composites Special Harbin 150080 Peoples R China;

    Harbin Inst Technol Natl Key Lab Sci &

    Technol Adv Composites Special Harbin 150080 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 增强塑料、填充塑料;
  • 关键词

    attapulgite; carbon fiber reinforced composites; graphene oxide; interfacial shear strength;

    机译:爬琴;碳纤维增强复合材料;石墨烯氧化物;界面剪切强度;

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