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Investigating flexural performance of waste tires steel fibers-reinforced cement-treated mixtures for sustainable composite pavements

机译:调查废气轮胎钢纤维增强水泥处理混合物的抗弯性能,可持续复合铺路

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In many parts of the world, the cement-treated base course material has been extensively used within composite pavements for enhancing the load-carrying capacity of pavements. However, its vulnerability to cracking under repetitive traffic loading, due to its brittle nature, significantly cuts off its lifespan and hence reducing the sustainability of composite pavements. To provide a solution to this problem, this study is aimed to investigate the flexural performance of cement-treated base (CTB) mixtures reinforced with the Waste Steel Fibers (WSF) extracted as a residual product from the scrap tires. The flexural performance is evaluated in terms of flexural fatigue and flexural strength. Moreover, the effect of steel fiber reinforcement on the dynamic modulus of the cement-treated base mixtures was also studied. The specimens for dynamic modulus were prepared by using a gyratory compactor to better simulate the traffic loading. Furthermore, the basic split tensile strength and unconfined compressive strength of WSF reinforced CTB mixtures were also studied. Lastly, important correlations were derived based on the results obtained in this study, to predict the flexural performance of CTB mixtures in terms of dynamic modulus and fatigue life by conducting basic split tensile strength tests and flexural strength tests. Based on the results, WSF reinforcement has noticeably enhanced tensile strength, dynamic modulus, flexural strength, and fatigue life of CTB mixtures. On the other hand, the variations in the compressive strength due to WSF reinforcement were trivial. Based on the results, the steel fibers content of 0.3% by volume of the wet compacted blend has shown more promising results than lower and higher WSF contents.(C) 2020 Elsevier Ltd. All rights reserved.
机译:在全球的许多地方,水泥处理的基础课程材料已广泛用于复合路面内,以增强路面的承载能力。然而,由于其脆性性质,它在重复的交通负荷下破裂的脆弱性,显着降低了其寿命,从而降低了复合人行道的可持续性。为了提供解决这个问题的解决方案,本研究旨在研究用作为废旧填充物中萃取的废钢纤维(WSF)加强的水泥处理基础(CTB)混合物的弯曲性能。在弯曲疲劳和弯曲强度方面评估弯曲性能。此外,还研究了钢纤维增强对水泥处理基础混合物动态模量的影响。通过使用陀螺夯更好地模拟交通负荷来制备动态模量的标本。此外,还研究了WSF增强CTB混合物的基本分裂拉伸强度和无束的抗压强度。最后,基于本研究中获得的结果来推导出重要的相关性,以通过进行基本分裂拉伸强度试验和弯曲强度试验来预测动态模量和疲劳寿命的CTB混合物的弯曲性能。基于结果,WSF增强率明显增强了CTB混合物的抗拉强度,动态模量,弯曲强度和疲劳寿命。另一方面,由于WSF增强件引起的抗压强度的变化是微不足道的。基于结果,湿式压实混合物的0.3%钢纤维含量显示出比较低和更高的WSF内容更高的效果更有前景。(c)2020 Elsevier Ltd.保留所有权利。

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