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Mixture Design and Testing of Fiber-Reinforced Self-Consolidating Concrete

机译:纤维增强自固结混凝土的配合比设计与试验

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An extensive testing program was undertaken to evaluate the applicability of a mixture-proportioning method proposed for shrinkage control in fiber-reinforced concrete (FRC) in proportioning fiber-reinforced self-consolidating concrete (FR-SCC). The study also proposed test methods to evaluate workability of FR-SCC. The investigated fibers included polypropylene, steel, and hybrid fibers of different properties with fiber lengths of 5 to 50 mm (0.20 to 1.97 in.). Fiber volume V_f ranged between 0.25 and 0.75%. The study also aimed to determine the impact of fiber type and addition on key properties of the fresh and hardened concrete. Hardened properties included compressive, splitting tensile, and average residual strengths. Test results indicate that the proposed methodology to maintain constant mortar thickness over coarse aggregate and fibers can reduce any significant drop in workability of FR-SCC, resulting from an increase in fiber factor. In general, a V_f of 0.5% is found to be an upper limit for the production of SCC. A greater V_f can hinder the self-consolidating characteristics. For the assessment of the passing ability of FR-SCC, a modified J-ring setup containing six or eight bars instead of 16 bars is proposed. The passing ability of FR-SCC can be expressed as the ratio of diameter:height at the center of the J-ring test. The passing ability can also be evaluated using the L-box with a single bar instead of three bars. A superworkable concrete (SWC) requiring low consolidation energy can still be produced with a V_f of 0.75% when a viscosity-modifying admixture is incorporated to prevent segregation and blockage. For the tested fiber types, the average residual strength (ARS) in flexure is shown to increase with V_f. Steel fibers exhibited the highest ARS value.
机译:进行了广泛的测试计划,以评估提出的混合配比方法在控制纤维增强自固结混凝土(FR-SCC)中的适用性,以控制纤维增强混凝土(FRC)的收缩。这项研究还提出了评估FR-SCC可操作性的测试方法。所研究的纤维包括聚丙烯,钢和具有5至50毫米(0.20至1.97英寸)的纤维长度的不同性能的混合纤维。纤维体积V_f在0.25至0.75%之间。该研究还旨在确定纤维类型和添加量对新鲜和硬化混凝土关键性能的影响。硬化性能包括抗压强度,劈裂抗拉强度和平均残余强度。测试结果表明,所提出的在粗骨料和纤维上保持恒定砂浆厚度的方法可以减少由于纤维系数增加而导致的FR-SCC的可加工性下降。通常,V_f为0.5%是生产SCC的上限。 V_f较大会阻碍自固结特性。为了评估FR-SCC的通过能力,提出了一种改进的J形环装置,该装置包含6或8条而不是16条。 FR-SCC的通过能力可以表示为J形环测试中心的直径与高度之比。传递能力还可以使用带有单个条形而不是三个条形的L盒来评估。当掺入粘度调节剂以防止偏析和阻塞时,仍可以以0.75%的V_f生产要求低固结能量的超加工混凝土(SWC)。对于测试的纤维类型,弯曲平均残余强度(ARS)显示随V_f增加。钢纤维表现出最高的ARS值。

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