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Improving the performance of concrete using 3D fibres

机译:使用3D纤维提高混凝土的性能

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This paper examines whether 3D fibre reinforcement can improve the toughness and flexural strength of concrete, when compared to equal dosage of straight steel fibres. This work was carried out to determine structural qualities that may lead to potential enhanced performance when concrete is subjected to a bomb blast and in addition the same structural qualities may act as a safety measure in earthquake situations. The majority of injuries caused from bomb attacks are a result of fragmented building components energised by the blast wave, therefore it is vital to reduce fragmentation of concrete. It is known that fibre reinforcement can reduce fragmentation of concrete by increasing energy absorption. A three point beam test was conducted on two batches of beams reinforced with straight steel and 3D fibres respectively, so that flexural strength and post crack toughness could be calculated and compared. A paired comparison test was carried out between the straight steel fibres and the 3D fibres. 3D and straight steel fibres were also embedded in cubes, so that pull out testing could be conducted and compared for the two fibre types. 3D fibre reinforced samples proved to have a higher flexural strength and post crack toughness than straight steel samples. 3D fibres also had a much higher pull out value. After testing, 3D fibres continued to span the rupture plane after initial crack formation during 3 point bend testing, which held together the concrete matrix. These findings suggest 3D fibre reinforced concrete would perform better as a blast protection material when compared to straight steel fibre reinforced concrete, as the results show 3D fibres produce tougher concrete that hold together fragments after loading.
机译:本文介绍了3D光纤加固是否可以提高混凝土的韧性和抗弯强度,与直钢纤维的相等剂量相比。这项工作是为了确定有可能导致混凝土经受炸弹爆炸而导致潜在增强性能的结构质量,并且另外相同的结构质量可以作为地震情况的安全措施。炸弹攻击引起的大部分伤害是由爆发波激励的碎片化建筑部件的结果,因此减少混凝土碎片至关重要。众所周知,纤维增强件可以通过增加能量吸收来减少混凝土的碎片化。在用直钢和3D纤维增强的两批梁上进行三点光束试验,从而可以计算并比较弯曲强度和抗裂纹韧性。在直钢纤维和3D纤维之间进行配对的比较试验。 3D和直钢纤维也嵌入立方体中,从而可以对两种纤维类型进行并比较拔出测试。 3D纤维增强样品被证明具有比直钢样品更高的弯曲强度和后裂缝韧性。 3D纤维也具有更高的拉出值。在测试之后,3D纤维在3点弯曲测试期间继续横跨初始裂缝形成后的破裂平面,该弯曲测试将混凝土矩阵保持在一起。这些发现建议3D纤维钢筋混凝土与直钢纤维钢筋混凝土相比,如爆破保护材料更好,因为结果显示3D纤维产生更加难度的混凝土,在装载后将碎片保持在一起。

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