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Tensile Behavior of Normal-Strength Steel-Fiber Green Ultra-High-Performance Fiber-Reinforced Concrete

机译:正常强度钢纤维绿色超高效纤维钢筋混凝土的拉伸行为

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摘要

This paper investigates the tensile behavior of green ultra-high-performance fiber-reinforced concrete (UHPFRC) using commercially available steel fibers. An ecofriendly ultra-high-performance concrete (UHPC) with a low carbon footprint was developed, aiming for a compressive strength of 150 MPa (22 ksi) and a high packing density (0.81) while using recycled glass powder and micro-limestone powder as partial substitution of silica fume and ordinary portland cement. Besides the commercially available normal-strength deformed steel fibers, high-strength smooth steel fibers were used to establish a comparison. The study showed that, with appropriate hooked normal-strength and smooth high-strength steel fibers, 1% of fiber is enough to achieve strain hardening behavior. Moreover, the smooth fibers achieved the maximum tensile strength (σ_(pc)= 11.04 MPa) when 2% of volume was used. However, despite having less tensile strength, only the hooked-end fibers achieved a maximum post-cracking strain (ε_(pc)) of over 0.3% using 2% of volume.
机译:本文研究了绿色超高效纤维增强混凝土(UHPFRC)的拉伸行为,采用市售钢纤维。开发了一种具有低碳足迹的ECOIENDLIED超高性能混凝土(UHPC),旨在使用再生玻璃粉和微石灰石粉末的150MPa(22 kSI)和高填充密度(0.81)的压缩强度。硅胶和普通波特兰水泥的部分替代。除了市售的正常强度变形钢纤维之外,使用高强度光滑钢纤维来建立比较。该研究表明,通过适当的钩状的正常强度和光滑的高强度钢纤维,1%的纤维足以实现应变硬化行为。此外,当使用2%的体积时,平滑纤维实现了最大拉伸强度(σ_(PC)= 11.04MPa)。然而,尽管具有较少的拉伸强度,但是只有钩端的纤维才能使用2%的体积达到0.3%以上的最大裂化菌株(ε_(PC))。

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