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首页> 外文期刊>Construction and Building Materials >Mechanical properties of concrete-reinforced fibres and powders with crushed thermoset composites: The influence of fibre/matrix interaction
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Mechanical properties of concrete-reinforced fibres and powders with crushed thermoset composites: The influence of fibre/matrix interaction

机译:压碎的热固性复合材料的混凝土增强纤维和粉末的机械性能:纤维/基体相互作用的影响

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摘要

This paper focuses firstly on the formulation and mechanical behaviour of concrete reinforced fibre and powder (CRFP). Secondly, we present the effect of silane treatment on the bond characteristics of the fibre-matrix of ultra-high-performance concrete (UHPC). The initial objective of the study was to optimize the incorporation of fibres and powders in high performance concrete (HPC). Two materials were investigated. The first involved replacing a volume of sand by an equivalent volume of fibres and powders. The second type was obtained by replacing an equivalent volume of silica fume with powders. Testing of the first material showed that the incorporation of fibres and powders by sand substitution increased the bending and tensile strength by 32%. In the second material, the substitution of silica fume by the powder led to an increase of 37% in flexural and tensile strengths. The second section of this paper focuses on silane-treated fibres. The experimental results on fibre pull-out tests under different conditions are reported. Various silane treatment contents ranging from 0% to 1 % were studied. Fibre pullout tests were conducted to measure the bond characteristics of fibres in the UHPC matrix. The treatment by vinyl trimethoxy silane (VTMO) can effectively enhance the fibre-matrix interfacial properties, especially the fibre pullout energy. It was concluded that in terms of the bond characteristics, the optimal silane content is 0.5% under these conditions.
机译:本文首先关注混凝土增强纤维和粉末(CRFP)的配方和力学性能。其次,我们介绍了硅烷处理对超高性能混凝土(UHPC)纤维基体粘结特性的影响。该研究的最初目标是优化纤维和粉末在高性能混凝土(HPC)中的掺入。研究了两种材料。首先是用等量的纤维和粉末代替一定量的沙子。第二种是通过用粉末代替等体积的硅粉来获得的。对第一种材料的测试表明,通过砂替代引入的纤维和粉末的弯曲和拉伸强度提高了32%。在第二种材料中,粉尘替代了硅粉,从而使弯曲强度和拉伸强度提高了37%。本文的第二部分着重于硅烷处理的纤维。报告了在不同条件下进行光纤拉拔测试的实验结果。研究了各种硅烷处理含量,范围从0%到1%。进行纤维拉拔测试以测量UHPC基质中纤维的粘结特性。乙烯基三甲氧基硅烷(VTMO)的处理可以有效增强纤维-基质的界面性能,尤其是纤维的拉拔能。结论是,就键合特性而言,在这些条件下最佳硅烷含量为0.5%。

著录项

  • 来源
    《Construction and Building Materials》 |2012年第2012期|p.332-338|共7页
  • 作者单位

    Ecole des Mines de Douai, Department of Civil and Environmental Engineering, 941 Rue Charles Bourseul, 59508 Douai Cedex, France,Ecole des Mines de Douai, Polymer and Composites Technology and Mechanical Engineering Department, 941 Rue Charles Bourseul, BP 10838. 58508 Douai Cedex. France;

    Ecole des Mines de Douai, Department of Civil and Environmental Engineering, 941 Rue Charles Bourseul, 59508 Douai Cedex, France;

    Ecole des Mines de Douai, Department of Civil and Environmental Engineering, 941 Rue Charles Bourseul, 59508 Douai Cedex, France;

    Ecole des Mines de Douai, Polymer and Composites Technology and Mechanical Engineering Department, 941 Rue Charles Bourseul, BP 10838. 58508 Douai Cedex. France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    UHPC; UHPFRC; thermoset composite; waste recycling; ductility; interfacial transition zone;

    机译:UHPC;UHPFRC;热固性复合材料;废物回收;延展性界面过渡带;

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