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Flexural performance and tension-stiffening evaluation of reinforced concrete beam incorporating recycled aggregate and fly ash

机译:含再生骨料和粉煤灰的钢筋混凝土梁的抗弯性能和抗拉强度评估

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This paper presents the effect of fly ash in recycled aggregate concrete (RAC with 100% recycled coarse aggregates) on the flexural performance of reinforced concrete (RC) beam. Particle packing method (PPM) of mixture proportioning is used in a novel way for the flexure study. This method by principle accounts for the excess adhered mortar present on the outer surface of recycled coarse aggregates (RCA) while calculating maximum packing density and consequently minimize the requirement of fresh mortar. The parameters such as materials (aggregate type and fly ash), mix design method and reinforcement percentages are considered for evaluation of moment carrying capacity, deflection, and failure pattern. Based on experimental results, the constitutive relation for cracked RAC and natural aggregate concrete (NAC) is evaluated numerically showing tension stiffening effect. The results conclude mostly comparable moment carrying capacity of RAC incorporating fly ash beams and NAC beams at ultimate limit state. The maximum mid-span deflection has been observed to be higher, but the variation is not substantial at service load due to the effect of fly ash and PPM in RAC. The reduced tension-stiffening effect, as observed from the derived stress-strain relation of cracked concrete justifies the higher mid span deflection in RAC. The applicability of existing code provisions for NAC beam is assessed for RAC with fly ash beams. The results suggest the potential application of 100% recycled coarse aggregates and up to 30% fly ash in a reinforced concrete beam without compromising its flexure performance. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了粉煤灰在再生骨料混凝土(RAC和100%再生粗骨料)中对钢筋混凝土(RC)梁抗弯性能的影响。混合物配比的颗粒堆积法(PPM)以一种新颖的方式用于挠曲研究。原则上,该方法考虑了再生粗骨料(RCA)外表面上存在的过量粘结砂浆,同时计算了最大填充密度,因此将对新鲜砂浆的需求降至最低。考虑了诸如材料(骨料类型和粉煤灰),混合料设计方法和配筋百分比等参数,以评估弯矩承载力,挠度和破坏模式。基于实验结果,对破裂的RAC和天然骨料混凝土(NAC)的本构关系进行了数值评估,以显示抗拉刚度效果。结果得出结论,在极限极限状态下,结合了粉煤灰梁和NAC梁的RAC的矩承载力基本相当。已观察到最大中跨挠度较高,但由于RAC中的粉煤灰和PPM的影响,该载荷在使用负荷下变化不大。从产生的开裂混凝土的应力-应变关系中观察到,减小的拉伸刚度效应证明了RAC中跨度较高的挠度是合理的。对于带有粉煤灰梁的RAC,评估了现有NAC梁规范的适用性。结果表明,在不损害其挠曲性能的情况下,可将100%的再生粗骨料和高达30%的粉煤灰应用于钢筋混凝土梁。 (C)2018 Elsevier Ltd.保留所有权利。

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