Luo Xianzhi, Zhang Sumei, Li Aidong, Zhang Chenming, Zhang Yuchen
School of Civil and Environmental Engineering, Harbin Institute of Technology, Shenzhen, University Town, Shenzhen 518055, China.
Guangdong Provincial Key Laboratory of Intelligent and Resilient Structures for Civil Engineering, Shenzhen 518055, China.
Materials (Basel). 2024 May 17;17(10):2418. doi: 10.3390/ma17102418.
Ultra-high-performance concrete (UHPC) with a low steel fiber volume fraction offers lower material costs than UHPC with typical steel fiber volume fractions, and has the potential to mitigate the ductility degradation of rebar-reinforced UHPC (R-UHPC). This study explores the reinforcement effect on the tensile behavior of UHPC with a low fiber volume fraction with the aim of facilitating more cost-efficient UHPC applications. The axial tensile behavior of 30 UHPC specimens with low fiber volume fractions at different reinforcement ratios was tested through direct tensile tests. The findings indicate that adopting UHPC with a low fiber volume fraction can significantly mitigate the ductility deterioration of rebar-reinforced UHPC (R-UHPC), and both increasing the reinforcement ratio and decreasing the fiber volume fraction contribute to the improvement in ductility. The failure modes of R-UHPC are determined by the ratio of reinforcement ratio and fiber volume fraction, rather than a single parameter, which also means that R-UHPC with different parameters may correspond to different methods to predict tensile load-bearing capacity. For UHPC with a fiber volume fraction low to 0.5%, incorporating steel rebars gives superior multi-crack cracking behavior and excellent capacity to restrict the maximum crack width. Increasing the fiber volume fraction from 0.5% to 1.0% at the same reinforcement ratio will yield little benefit other than an increase in tensile load-bearing capacity.
与具有典型钢纤维体积分数的超高性能混凝土(UHPC)相比,钢纤维体积分数较低的UHPC具有更低的材料成本,并且有潜力减轻钢筋增强UHPC(R-UHPC)的延性退化。本研究探讨了低纤维体积分数的UHPC对拉伸性能的增强效果,旨在促进更具成本效益的UHPC应用。通过直接拉伸试验测试了30个不同配筋率的低纤维体积分数UHPC试件的轴向拉伸性能。研究结果表明,采用低纤维体积分数的UHPC可以显著减轻钢筋增强UHPC(R-UHPC)的延性劣化,增加配筋率和降低纤维体积分数均有助于延性的提高。R-UHPC的破坏模式由配筋率与纤维体积分数的比值决定,而非单一参数,这也意味着不同参数的R-UHPC可能对应不同的拉伸承载能力预测方法。对于纤维体积分数低至0.5%的UHPC,加入钢筋可产生优异的多裂缝开裂性能以及出色的限制最大裂缝宽度的能力。在相同配筋率下将纤维体积分数从0.5%提高到1.0%,除了增加拉伸承载能力外,几乎没有其他益处。