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Stress-strain behavior of spirally confined recycled aggregate concrete: An approach towards sustainable design

机译:螺旋狭窄再生骨料混凝土的应力 - 应变行为:可持续设计的方法

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摘要

Application of recycled aggregate concrete (RAC) in the concrete structures is very limited due to inferior performance. Moreover, design of concrete structures ignores the role of transverse reinforcement in the strength enhancement of compression members. This study aims to utilize pre-existing transverse reinforcement to improve the performance of RAC. For this purpose, spirally confined concrete specimens were examined under axial compression, with the variation of three recycled aggregates (RA) replacement ratios (i.e., 0, 50 and 100%) and three pitches of spiral reinforcement (i.e., 20, 30 and 40 mm). The results show that increase of RA will cause a reduction of peak strength and peak strain. However, improved strength and ductility of RAC are observed with the increase in confinement pressure. A comparative study of the existing models for stress-strain behavior of steel confined normal aggregate concrete (NAC) with the test results indicates that the stress-strain characteristics of steel confined RAC cannot be well predicted using these existing models. Based on the test results, a model is developed in this work by modifying the parameters of best performing stress-strain model for steel confined NAC to incorporate the influence of RA replacement ratio. The proposed model can estimate the stress strain characteristics of both NAC and RAC confined by steel spiral, which may be helpful in designing the sustainable RAC compression members. Moreover, an equation is presented to estimate the amount of RA for the given confinement level which can be recycled without compromising the design strength of spirally confined concrete compression members.
机译:由于较差的性能,循环聚集体混凝土(RAC)在混凝土结构中的应用非常有限。此外,混凝土结构的设计忽略了横向增强在压缩构件强度增强中的作用。本研究旨在利用预先存在的横向强化来提高RAC的性能。为此目的,在轴向压缩下检查螺旋压缩混凝土样本,其三种再循环聚集体(RA)替代比(即0,50和100%)和三个螺旋增强液(即20,30和40)的变化毫米)。结果表明,RA的增加将导致峰强度和峰应变的降低。然而,随着限制压力的增加,观察到RAC的改善的强度和延展性。对钢的应力 - 应变行为现有模型的比较研究局限性正常骨料混凝土(NAC)表明,使用这些现有模型,不能良好地预测钢的应力 - 应变特性。基于测试结果,通过改变钢的最佳性应力 - 应变模型的参数来开发模型,该工作是钢的最佳应力 - 应变模型掺入RA更换比的影响。所提出的模型可以估计由钢螺旋限制的NAC和RAC的应力应变特性,这可能有助于设计可持续的RAC压缩构件。此外,提出了一种等式以估计给定的限制水平的RA的量,其可以再循环而不会损害螺旋混凝土压缩构件的设计强度。

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