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Dispersion, Workability and Mechanical Properties of Different Steel-Microfiber-Reinforced Concretes with Low Fiber Content

机译:具有低纤维含量的不同钢微纤维增强混凝土的分散,可加工性和机械性能

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摘要

Steel-microfiber-reinforced concrete has been proven to be an effective type of hybrid fiber-reinforced concrete (HyFRC). The microfiber used in these concretes generally include microfilament steel (MS) fibers and synthetic fibers, such as polypropylene (PP), polyvinyl alcohol (PVA), and polyacrylonitrile (PAN) fibers. This study aims to obtain the optimal type of steel-microfiber HyFRC, with low fiber content, which can be easily used in engineering projects without special fabrication procedures, thus achieving the concept of sustainability. Four types of HyFRC that blend steel (S) fiber with MS, PP, PVA and PAN were studied. These HyFRC were compared through a systematic experimental campaign in which the fiber dispersion, mixture workability, and concrete mechanical properties were investigated. The experimental results of the fiber dispersion and mixture workability indicate the following qualitative relationship: MS > PVA ≈ PP > PAN. For the mechanical properties of the concretes, the S-MS, and S-PVA HyFRCs generate an overall higher enhancing effect than those of the S-PP and S-PAN HyFRCs and show a positive hybridization effect for most properties. The S-MS HyFRC is superior in strength, and the S-PVA HyFRC has a significantly improved toughness. Because PVA has relatively good dispersion and workability properties, and toughness is the most important and effective mechanical property in the fiber-reinforced concrete, this study recommends that the S-PVA HyFRC is the optimal type of steel-microfiber HyFRC.
机译:钢的微细纤维增强混凝土已被证明是一种有效类型的混合纤维加强混凝土(HyFRC)的。在这些混凝土中所使用的微纤维通常包括微丝钢(MS)纤维和合成纤维,例如聚丙烯(PP),聚乙烯醇(PVA)和聚丙烯腈(PAN)纤维。本研究旨在获得钢的微细纤维HyFRC的最佳类型,具有低纤维含量,可以在工程项目中被容易地使用,无需特殊的制造程序,从而实现可持续发展的概念。四种类型的HyFRC与MS,PP,PVA和PAN混合钢(S)纤维进行了研究。这些HyFRC是通过系统的实验系列,其中纤维分散体,混合物的加工性,和混凝土的机械性能进行了研究比较。光纤色散和混合物的可加工性的实验结果表明以下定性关系:MS> PVA≈PP> PAN。对于混凝土的机械性能,在S-MS和S-PVA HyFRCs产生比那些在S-PP和S-PAN HyFRCs的整体更高促进效果,示出了用于大多数属性阳性杂交作用。在S-MS HyFRC是在强度优异,并且S-PVA HyFRC具有显著改进的韧性。因为PVA具有相对良好的分散性和可加工性性能和韧性是在纤维增强混凝土的最重要和有效的机械性能,本研究建议,S-PVA HyFRC是钢的微细纤维HyFRC的最佳类型。

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