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Improving the Tensile Energy Absorption of High Strength Natural Fiber Reinforced Concrete with Fly-Ash for Bridge Girders

机译:用桥梁粉煤灰提高高强度天然纤维钢筋混凝土的拉伸能量吸收

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Nowadays high strength concrete is used in bridge girders due to its improved mechanical properties. However, its behavior is relatively more brittle compared to that of normal strength concrete. Due to the highest toughness among natural fibers, coconut fibers are chosen. In this work, the impact of different fly-ash contents on tensile absorbed energy of high strength coconut fiber reinforced concrete (CFRC-SF) will be investigated for structural application. The mix design ratio of CFRC-SF is 1:2:2 (cement: sand: aggregate) with a water-cement ratio of 0.50 and silica-fume content of 15%. The coconut fibers of 5 cm length and content of 2%, by cement mass, are added. To prepare CFRC-SF5, CFRC-SF10 and CFRC-SF15, different fly-ash contents of 5%, 10% and 15%, respectively, (by cement mass) are added. For determination of splitting-tensile strength, pre-crack/ absorbed energy after crack and toughness indices, cylinders of size 100 mm diameter and 200 mm height are cast and are tested under splitting-tensile load as per ASTM standard. The tensile absorbed energy of CFRC-SF is increased up to 10% fly-ash content. Further study on durability of CFRC-SF is suggested due to the biological nature of coconut fibers.
机译:如今,高强度混凝土用于桥梁梁,由于其改进的机械性能。然而,与正常强度混凝土相比,其行为比较脆。由于天然纤维中的最高韧性,选择椰子纤维。在这项工作中,将研究不同粉煤灰内容对高强度椰子纤维增强混凝土(CFRC-SF)的拉伸吸收能量的影响,以进行结构应用。 CFRC-SF的混合设计比例为1:2:2(水泥:砂:骨料),水水柱比为0.50和二氧化硅烟雾含量为15%。加入5cm长度的椰子纤维,含量为2%,通过水泥质量。为了制备CFRC-SF5,CFRC-SF10和CFRC-SF15,分别为5%,10%和15%的不同粉煤灰含量(通过水泥质量)。为了确定分裂拉伸强度,裂缝和韧性指数后的预裂缝/吸收能量,铸造尺寸为100mm直径和200mm高度的圆柱,并根据ASTM标准在分裂拉伸负载下进行测试。 CFRC-SF的拉伸吸收能量增加至多10%的粉煤灰含量。由于椰子纤维的生物学,提出了CFRC-SF耐久性的进一步研究。

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