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首页> 外文期刊>MOJ Civil Engineering >Performance of Reinforced Concrete Columns Using Ultra-High-Strength Fiber-Reinforced Self-Compacted Concrete (UHS-FRSCC)
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Performance of Reinforced Concrete Columns Using Ultra-High-Strength Fiber-Reinforced Self-Compacted Concrete (UHS-FRSCC)

机译:超高强度纤维自密实混凝土(UHS-FRSCC)的钢筋混凝土柱的性能

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Ultra-high-strength concrete (UHSC) low ductility leads to unfavorable brittle failure. Therefore, the use of steel fibers in UHSC will extend the possible fields of application. Owing to the very low water content of UHSC mixes, the incorporation of fibers seems to be impossible. Hence, modification of the UHSC mix to become a self-compacting mix will enable the inclusion of steel fibers without sacrificing its workability. In this study, the behavior of eight axially loaded medium scale columns cast with ultra-high-strength fiber-reinforced self-compacting concrete (UHS-FR-SCC) is investigated. The parameters included the effect of fiber inclusion, fibers volume fraction and the transverse steel percentage (i.e. stirrups). Two columns were tested as control specimen without fiber inclusion; the remaining six columns were tested in 3 groups, each group consisted of 2 columns. The fiber volume fraction was varied between the three groups. In each group, the transverse steel percentage was varied. The behavior of the tested columns was evaluated with respect to ultimate load, strain in concrete, axial reinforcement and transverse reinforcement, and modes of failure of the tested columns. It was found that the inclusion of steel fibers increased the deformability (i.e. axial deformation) and load carrying capacity of the UHSC especially at high fiber volume fractions. At high fiber volume fraction the high deformability of the concrete activated the confinement exerted by the stirrups.
机译:超高强度混凝土(UHSC)的低延展性导致不利的脆性破坏。因此,在UHSC中使用钢纤维将扩展可能的应用领域。由于UHSC混合物的水含量极低,因此似乎无法掺入纤维。因此,将UHSC混合物改性为自密实混合物,将能够在不牺牲其可加工性的情况下包含钢纤维。在这项研究中,研究了八根采用超高强度纤维增强自密实混凝土(UHS-FR-SCC)浇铸的轴向荷载中型柱的性能。这些参数包括纤维夹杂物的影响,纤维体积分数和钢的横向百分比(即箍筋)。测试了两根柱子作为没有纤维夹杂物的对照样品。其余6根色谱柱分为3组进行测试,每组包括2根色谱柱。纤维体积分数在三组之间变化。在每个组中,横向钢百分比是变化的。在极限载荷,混凝土应变,轴向钢筋和横向钢筋以及被测柱的破坏模式方面评估被测柱的性能。发现包含钢纤维增加了UHSC的可变形性(即轴向变形)和承载能力,特别是在高纤维体积分数下。在高纤维体积分数下,混凝土的高变形性激活了箍筋施加的约束。

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