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Enhanced mechanical and electromagnetic properties of polymer composite with 2.5D novel carbon/quartz fiber core-spun yarn woven fabric

机译:用2.5D新型碳/石英纤维纺纱纱线编织织物增强了聚合物复合材料的机械和电磁特性

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摘要

A set of radar absorbent carbon/quartz fiber hybrid core-spun yarns (9B, 12B17A, and 12B25A) with different braided structure (round and flat) and braiding angle (17° and 25°) were designed, and then the mechanical and electromagnetic properties of the corresponding 2.5D core-spun yarn/epoxy composites (9BC, 12B17AC, and 12B25AC) were investigated in this study. The results showed that the composite made by round core-spun yarns with large braiding angle (12B25AC) had the highest mechanical properties and the best radar absorbing properties in the three types of 2.5D core-spun yarn/epoxy composites. The effective absorption bandwidth (reflection loss  −10 dB), maximum reflection loss value, tensile strength, and bending strength of the 12B25AC was 3.9 GHz (14.1–18 GHz), −17.2 dB at 16.7 GHz, 428.43 MPa, and 545.10 MPa, respectively. Therefore, the 2.5D reinforced composite by the round core-spun yarns with large braiding angle offers a unique architectural method to attain both outstanding radar absorption and mechanical performances.
机译:设计了一组雷达吸收剂碳/石英光纤混合芯纺纱纱(9B,12B17A和12B25A),具有不同的编织结构(圆形和平坦)和编织角(17°和25°),然后机械和电磁在本研究中研究了相应的2.5D核心纺纱纱/环氧复合材料(9BC,12B17AC和12B25AC)的性质。结果表明,具有大编织角(12b25ac)的圆形芯纺纱制造的复合材料具有最高的机械性能和三种类型的2.5d芯纺纱纱/环氧复合材料中的最佳雷达吸收性能。 12B25AC的有效吸收带宽(反射损耗和反射损耗和反射损失),最大反射损耗,拉伸强度和弯曲强度为3.9GHz(14.1-18GHz),-17.2dB,16.7 GHz,428.43 MPa和545.10 MPA分别。因此,具有大编织角度的圆形芯纺纱的2.5D增强复合材料提供了一种独特的建筑方法,可实现彻底的雷达吸收和机械性能。

著录项

  • 来源
    《Journal of Industrial Textiles》 |2021年第1期|134-151|共18页
  • 作者单位

    School of Textile Science and Engineering Xi'an Polytechnic University|Ministry of Education Key Laboratory of Functional Textile Material and Product Xi'an Polytechnic University;

    School of Textile Science and Engineering Xi'an Polytechnic University|Ministry of Education Key Laboratory of Functional Textile Material and Product Xi'an Polytechnic University;

    School of Textile Science and Engineering Xi'an Polytechnic University|Ministry of Education Key Laboratory of Functional Textile Material and Product Xi'an Polytechnic University;

    School of Textile Science and Engineering Xi'an Polytechnic University|Ministry of Education Key Laboratory of Functional Textile Material and Product Xi'an Polytechnic University;

    School of Textile Science and Engineering Xi'an Polytechnic University|Ministry of Education Key Laboratory of Functional Textile Material and Product Xi'an Polytechnic University;

    School of Textile Science and Engineering Xi'an Polytechnic University|Ministry of Education Key Laboratory of Functional Textile Material and Product Xi'an Polytechnic University;

    School of Textile Science and Engineering Xi'an Polytechnic University|Ministry of Education Key Laboratory of Functional Textile Material and Product Xi'an Polytechnic University;

    School of Textile Science and Engineering Xi'an Polytechnic University|Ministry of Education Key Laboratory of Functional Textile Material and Product Xi'an Polytechnic University;

    School of Textile Science and Engineering Xi'an Polytechnic University|Ministry of Education Key Laboratory of Functional Textile Material and Product Xi'an Polytechnic University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Core-spun yarn; 2.5D woven fabric; composite yarn; mechanical property; electromagnetic property;

    机译:芯纺纱;2.5D织物;复合纱;机械性能;电磁特性;

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