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首页> 外文期刊>Materials Science and Engineering >Interfacial phase induced load transfer in short carbon fiber reinforced Nb/Nb_5Si_3 composites
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Interfacial phase induced load transfer in short carbon fiber reinforced Nb/Nb_5Si_3 composites

机译:短碳纤维增强Nb / Nb_5si_3复合材料中的界面相诱导负载转移

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摘要

Load transfer is the main responsibility for improving mechanical properties of fiber reinforced metal composites, but it is significantly affected by interfacial phase. Short carbon fiber reinforced Nb/Nb_5Si_3 composites were successfully fabricated at different temperatures. Interfacial Nb_4C_3 is a nanoscale formed by in situ reaction, and the diameter and volume fraction of Nb_4C_3 phases increase with the fabrication temperature increasing. Due to the Nb_4C_3 phases are intimately attached to carbon fibers and tightly embedded in the matrix of composites, an anchor effect is induced between fibers and matrix. The load transfer of interface in composites was discussed, which is affected by the Nb_4C_3 phases. The interfacial Nb_4C_3 phases help to increase the load transfer efficiency, but also damage the carbon fiber, resulting in that carbon fiber can not effectively bear the transferred load but fracture. A relationship of the load transfer efficiency with the equivalent diameter of Nb_4C_3 phase was established. For regulating the load transfer efficiency, the control method of the equivalent diameter of Nb_4C_3 phase was established innovatively, which indicates that the equivalent diameter can be adjusted by fabrication temperature and time. This work provides new viewpoints for disclosing the load transfer in composites containing interfacial nano-sized phase.
机译:负载转移是改善纤维增强金属复合材料的机械性能的主要责任,但它受界面阶段的显着影响。在不同温度下成功制造短碳纤维增强Nb / Nb_5SI_3复合材料。界面Nb_4c_3是通过原位反应形成的纳米级,并且Nb_4c_3相的直径和体积分数随制造温度的增加而增加。由于Nb_4c_3相密切地附着在碳纤维上并紧密地嵌入复合材料的基质中,纤维和基质之间诱导锚效应。讨论了复合材料中的界面的负载传递,其受Nb_4c_3相的影响。界面Nb_4c_3阶段有助于提高负载转移效率,也有损伤碳纤维,导致碳纤维不能有效承受转移的负荷但骨折。建立了载荷传递效率与NB_4C_3相等同直径的关系。为了调节负载转移效率,创新地建立了NB_4C_3相的等效直径的控制方法,这表明可以通过制造温度和时间调节等效直径。这项工作提供了用于在含有界面纳米大​​小相的复合材料中揭示负载转移的新观点。

著录项

  • 来源
    《Materials Science and Engineering》 |2021年第2期|140156.1-140156.7|共7页
  • 作者单位

    School of Aeronautical Manufacturing Engineering Nanchang Hongkong University Nanchang 330063 PR China;

    School of Aeronautical Manufacturing Engineering Nanchang Hongkong University Nanchang 330063 PR China;

    School of Aeronautical Manufacturing Engineering Nanchang Hongkong University Nanchang 330063 PR China;

    School of Aeronautical Manufacturing Engineering Nanchang Hongkong University Nanchang 330063 PR China;

    School of Aeronautical Manufacturing Engineering Nanchang Hongkong University Nanchang 330063 PR China;

    School of Aeronautical Manufacturing Engineering Nanchang Hongkong University Nanchang 330063 PR China;

    School of Aeronautical Manufacturing Engineering Nanchang Hongkong University Nanchang 330063 PR China;

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

    Short carbon fiber; Intermetallics; Strengthening mechanism; Interfacial reaction; Load transfer;

    机译:短碳纤维;金属间金属间;加强机制;界面反应;负载转移;

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