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Mechanical behavior of hybrid steel-PVA fibers reinforced reactive powder concrete

机译:钢-PVA混杂纤维活性粉末混凝土的力学性能

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摘要

Reactive powder concrete (RPC) is a type of ultra-high strength cement-based material with a dense microstructure, which is made of ultra-fine powders. RPC demonstrate a very brittle behavior, thus adding fibers improves its mechanical properties. In this study, it was attempted to investigate the effect of using steel and polyvinyl alcohol (PVA) fibers as well as their combination on the properties of RPC. In this regard, hooked-end crimped steel fibers together with short PVA fibers were utilized. Steel and PVA fibers were used with the maximum volume fraction of 3% and 0.75%, respectively, and also different combinations of these fibers were used with the maximum volume fraction of 1% in the concrete mixes. In total, 107 concrete specimens were prepared, and the effect of fiber type and volume fraction on the physico-mechanical properties of RPC including compressive strength, tensile strength, modulus of elasticity, density, and failure mode was explored. In addition, the effect of the curing type on the properties of compressive strength, modulus of elasticity, and density of RPC was evaluated. Finally, coefficients for conversion of cubic compressive strength to cylindrical one for the RPC specimens were obtained under the two curing regimes of heat treatment and standard water curing.
机译:活性粉末混凝土(RPC)是一种超高强度水泥基材料,具有致密的微观结构,由超细粉末制成。 RPC表现出非常脆的行为,因此添加纤维可改善其机械性能。在这项研究中,试图研究使用钢和聚乙烯醇(PVA)纤维及其组合对RPC性能的影响。在这方面,使用了钩端卷曲钢纤维和短PVA纤维。使用的钢纤维和PVA纤维的最大体积分数分别为3%和0.75%,并且在混凝土混合物中还使用了这些纤维的不同组合,最大体积分数为1%。总共准备了107个混凝土试样,并研究了纤维类型和体积分数对RPC物理力学性能的影响,包括抗压强度,抗张强度,弹性模量,密度和破坏模式。另外,评价了固化方式对抗压强度,弹性模量和RPC密度的性质的影响。最后,在热处理和标准水固化两种固化方式下,获得了RPC试样的立方抗压强度转换为圆柱形抗压强度的系数。

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