Maximum Fiber Content and Passing Ability of Self-Consolidating Fiber-Reinforced Concrete

S. Grünewald, J. Walraven
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引用次数: 4

Abstract

This paper will discuss how self-consolidating fiber-reinforced concrete (SCFRC) combines the benefits of self-consolidating concrete (SCC) in the fresh state and an enhanced performance of fiber reinforced concrete (FRC) in the hardened state. The application of SCC improves the efficiency at building sites, allows rationally producing prefabricated concrete elements and improves the working conditions, the quality and the aesthetic appearance of concrete structures. By adding fibers to SCC bar reinforcement can be replaced, crack widths reduced, the durability improved and the load bearing capacity of a structure increased. An extensive research study was carried out on the characteristics and the mix design of SCFRC that consisted of three parts: the fresh as well as the hardened state of SCFRC and the influence of the production process determined in three full-scale studies. This paper discusses two aspects of the mix design of SCFRC: the maximum fiber content and the required spacing of reinforcement at which blocking does not occur. Based on the analysis of experimental results mix design tools are proposed that allow predicting the maximum fiber content and the passing ability of SCFRC, which is essential information to obtain a homogeneous distribution of the fibers in a structure.
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自固结纤维增强混凝土的最大纤维含量及通过能力
本文将讨论自固结纤维增强混凝土(SCFRC)如何结合自固结混凝土(SCC)在新鲜状态下的优点和纤维增强混凝土(FRC)在硬化状态下的增强性能。SCC的应用提高了建筑工地的效率,合理地生产预制混凝土构件,改善了混凝土结构的工作条件、质量和美观。在SCC钢筋中加入纤维可以替代钢筋,减小裂缝宽度,提高结构的耐久性和承载能力。对SCFRC的特性和配合比设计进行了广泛的研究,包括三部分:SCFRC的新鲜状态和硬化状态,以及三个全尺寸研究确定的生产工艺的影响。本文讨论了SCFRC配合比设计的两个方面:最大纤维含量和不发生堵塞的配筋间距。在对试验结果分析的基础上,提出了预测纤维最大含量和纤维通过能力的混合设计工具,这是获得纤维在结构中均匀分布的必要信息。
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