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Influence of Fiber Volume Fraction and Fiber Orientation on the Uniaxial Tensile Behavior of Rebar-Reinforced Ultra-High Performance Concrete

机译:纤维体积分数和纤维取向对钢筋超高性能混凝土单轴拉伸性能的影响

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This paper studied the influence of fiber volume fraction ( V f ), fiber orientation, and type of reinforcement bar (rebar) on the uniaxial tensile behavior of rebar-reinforced strain-hardening ultra-high performance concrete (UHPC). It was observed that the tensile strength increased with the increase in V f . When V f was kept constant at 1%, rebar-reinforced UHPC with fibers aligned with the load direction registered the highest strength and that with fibers oriented perpendicular to the load direction recorded the lowest strength. The strength of the composite with random fibers laid in between. Moreover, the strength, as well as the ductility, increased when the normal strength grade 60 rebars embedded in UHPC were replaced with high strength grade 100 rebars with all other conditions remaining unchanged. In addition, this paper discusses the potential of sudden failure of rebar-reinforced strain hardening UHPC and it is suggested that the composite attains a minimum strain of 1% at the peak stress to enable the members to have sufficient ductility.
机译:本文研究了纤维体积分数(V f),纤维取向和钢筋类型(rebar)对钢筋增强的应变硬化超高性能混凝土(UHPC)的单轴拉伸性能的影响。观察到抗拉强度随着V f的增加而增加。当V f保持恒定在1%时,纤维与载荷方向对齐的钢筋增强UHPC的强度最高,而纤维与载荷方向垂直的取向的UHPC的强度最低。复合材料的强度,中间夹杂着无规纤维。此外,当将嵌入UHPC的普通强度等级60钢筋替换为高强度等级100钢筋,而所有其他条件保持不变时,强度和延展性都会提高。另外,本文讨论了钢筋加固的应变硬化UHPC突然失效的可能性,并建议该复合材料在峰值应力下达到1%的最小应变,以使构件具有足够的延展性。

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