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Impact of cyclic loading on longitudinally-reinforced UHPC flexural members with different fiber volumes and reinforcing ratios

机译:循环载荷对具有不同纤维体积和增强比的纵向增强UHPC弯曲构件的影响

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Ultra-high performance concrete (UHPC) is a promising material for many structural applications given its high compressive strength, its tensile ductility, and its potential durability through low permeability. Most research on steel reinforced UHPC (R/UHPC) flexural components has focused on monotonic performance and less is known about R/UHPC cyclic performance. Additionally, the steel fibers, which typically comprise 2% of the volume of a UHPC mix and account for 30% of the material cost, could potentially be reduced to improve both cost efficiency and performance of R/UHPC components. This study explores the impact of high-amplitude cyclic loading on R/ UHPC beams with different fiber volumes (1% and 2%) and reinforcing ratios (0.96% and 2.10%). A total of eight simply-supported beam experiments are compared in this study. Results show that for both monotonic and cyclically-loaded specimens, a higher reinforcing ratio and a lower fiber volume introduce more localized cracks, delay steel fracture, and increase R/UHPC deformation capacity. Compared to monotonically-loaded beams, cyclic loading reduces UHPC fiber-bridging capacity, resulting in lower component yield and peak strength as well as more localized cracks. The deformation capacity of cyclically-loaded beams is also lower than that of monotonically-loaded beams due to low cycle fatigue of the reinforcing steel. Differing fiber distributions due to material flow during casting were also found to impact the structural performance under different loading directions. A flexural failure path prediction method for R/UHPC is validated by both the monotonic and cyclic results.
机译:超高性能混凝土(UHPC)是许多结构应用的有希望的材料,其具有高抗压强度,其拉伸延展性,以及通过低渗透率的潜在耐用性。大多数关于钢筋强化UHPC(R / UHPC)弯曲部件的研究专注于单调性能,并且关于R / UHPC循环性能的较少。另外,通常包含2%的UHPC混合体积的钢纤维和占材料成本的30%,以提高R / UHPC组分的成本效率和性能。该研究探讨了具有不同纤维体积(1%和2%)和增强比(0.96%和2.10%)的R / UHPC光束对R / UHPC光束的影响。在本研究中,总共八个简单的光束实验。结果表明,对于单调和循环加载的样品,更高的增强比和较低的纤维体积引入了更多的局部裂缝,延迟钢断裂和增加了R / UHPC变形能力。与单调加载的光束相比,循环负载降低了UHPC光纤桥接能力,导致较低的组分产率和峰值强度以及更局部的裂缝。由于增强钢的低循环疲劳,循环加载光束的变形容量也低于单调加载梁的变形容量。还发现由于铸造期间的材料流引起的不同纤维分布,以影响不同的装载方向下的结构性能。通过单调和循环结果验证R / UHPC的弯曲故障路径预测方法。

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