首页> 外文会议>Advances in fracture and Damage Mechanics VII >Fiber Alignment of Steel Fiber Reinforced High Strength Concrete (SFR-HSC) in Flexural Members and its Effect on the Flexural Strength
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Fiber Alignment of Steel Fiber Reinforced High Strength Concrete (SFR-HSC) in Flexural Members and its Effect on the Flexural Strength

机译:钢纤维增强高强混凝土(SFR-HSC)在抗弯构件中的纤维排列及其对抗弯强度的影响

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The fibers alignment in steel fiber reinforced high strength concrete (SFR-HSC) has naturally significant influence on the mechanical properties of concrete. Fiber-reinforced concrete being manufactured by means various kinds of specimen shape and diversified filling methods and directions, these variables are likely to produce effect on the fibers alignment leading to large differences in its mechanical properties. This study intended to evaluate the effect of placing and flow direction not only on the fibers alignment but also on the tensile behavior of SFR-HSC. Section analysis using photographic shooting was adopted to investigate the fiber alignment and revealed considerable difference in the fiber alignment according to the placing and flow direction. The best alignment appears to be achieved when placing is done in the direction of the flexural tensile stress and the alignment was change with the flow distance although the same flow direction. Such placing and flow direction produce little difference in the first cracking strength but significant discrepancy up to 50% in the ultimate tensile strength.
机译:钢纤维增强高强度混凝土(SFR-HSC)中的纤维排列自然会对混凝土的机械性能产生重大影响。纤维增强混凝土是通过各种试件形状和多样化的填充方法和方向来制造的,这些变量可能会对纤维排列产生影响,从而导致其机械性能差异很大。这项研究旨在评估放置和流动方向不仅对纤维排列而且对SFR-HSC的拉伸行为的影响。采用照相照相法进行截面分析以研究纤维排列,并根据放置和流动方向揭示了纤维排列的显着差异。当在弯曲拉伸应力的方向上进行放置时,虽然流动方向相同,但排列方向却随着流动距离而变化,这似乎可以实现最佳对准。这样的放置和流动方向在第一抗裂强度上几乎没有差异,但是在极限抗拉强度上高达50%的显着差异。

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