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首页> 外文期刊>Journal of Structural Engineering >Experimental and Computational Evaluation of the Ductility of UHPC Beams with Low Steel-Reinforcement Ratios
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Experimental and Computational Evaluation of the Ductility of UHPC Beams with Low Steel-Reinforcement Ratios

机译:低钢筋比UHPC梁延性试验与计算评价

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Abstract There is a growing trend toward utilizing high steel-reinforcement ratios (as high as 5) in ultrahigh-performance concrete (UHPC) beams. This tendency is driven by the desire to take full advantage of the unique mechanical properties of UHPC, but results in construction that is expensive given the high cost of both steel reinforcement and UHPC. This paper focuses on UHPC beams with low reinforcement ratios and relatively low levels of fiber reinforcement in an attempt to reduce the cost of UHPC construction and hence broaden its appeal. Four-point bending tests were conducted on UHPC beams with steel-reinforcement ratios of ρ=0.85 and 1.54 and fiber volume fractions Vf=1.0, 1.5, and 2.0. The experimental results showed that increasing the fiber volume fraction, which increases material tensile ductility, did not necessarily lead to enhanced structural ductility. This observation was confirmed through validated computational modeling using a hybrid fixed/rotating crack model. Synthesizing the test and computational results, this paper advocates for an underreinforced design philosophy and use of a fiber volume fraction that is just enough to ensure that crack localization does not occur under working conditions. This philosophy minimizes the cost of UHPC beams, making them more attractive for broader usage. The latter consideration ensures that steel rebars will have enhanced protection against corrosion under working conditions, which, coupled with the high durability of UHPC, ensures highly durable construction with low long-term maintenance costs.
机译:摘要 在超高性能混凝土(UHPC)梁中采用高钢筋比(高达5%)的趋势日益明显。这种趋势是由充分利用UHPC独特机械性能的愿望驱动的,但考虑到钢筋和UHPC的高成本,导致结构成本高昂。本文重点研究了具有低增强率和相对低纤维增强水平的UHPC梁,以期降低UHPC的建设成本,从而扩大其吸引力。对钢筋比ρ=0.85%和1.54%,纤维体积分数Vf=1.0%、1.5%和2.0%的UHPC梁进行了四点弯曲试验。实验结果表明,增加纤维体积分数,增加材料拉伸延展性,并不一定能提高结构延展性。通过使用混合固定/旋转裂纹模型的验证计算建模证实了这一观察结果。综合测试和计算结果,本文提倡采用欠强化设计理念,并使用足以确保在工作条件下不会发生裂纹局部的纤维体积分数。这种理念最大限度地降低了UHPC光束的成本,使其对更广泛的用途更具吸引力。后一种考虑因素确保了钢筋在工作条件下具有增强的防腐蚀保护,再加上UHPC的高耐久性,确保了高度耐用的结构和较低的长期维护成本。

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