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Concrete with fine and coarse recycled aggregates: E-modulus evolution, compressive strength and non-destructive testing at early ages

机译:具有细和粗再生料的混凝土:E模量演变,抗压强度和早期的无损检测

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The combined use of fine and coarse recycled aggregates in the manufacture of concrete has multiple advantages from the economic and environmental points of view. There is a lack of knowledge about the behavior of concretes containing recycled aggregates, manifested by strong limitations (even prohibitions) in international standards for structural purposes. This paper aims to study the influence of fine and coarse recycled aggregate of concrete (jointly), with particular emphasis on the evolution of the kinetics of E-Modulus and its relationship with compressive strength and non-destructive testing.Concretes with different degrees of replacement of natural aggregates by recycled aggregates were studied: 0% (reference concrete), 8%, 20% and 31% of the total amount of aggregates. E-Modulus Measurement through Ambient Response Method (EMM-ARM) was used to monitoring the E-Modulus evolution. We also studied the influence of these recycled aggregates on the correlation between E-Modulus and compressive strength, as well as with two non-destructive testing techniques: Ultrasonic Pulse Velocity, and electrical conductivity. The activation energy of the studied concretes, based on data computed from compressive strength measurements at different curing temperatures was calculated.We observed a negative influence of recycled aggregate on the evolution of E-Modulus from the first 12 h, compared to the reference mixture. The crossover effect on E-Modulus evolution produced by high curing temperatures affects more to the concretes with recycled aggregate. Our data evidenced that the maturity correction for E-Modulus evolution, based on the activation energy of compressive strength, produced accurate superposition of E-modulus in the equivalent age domain. (C) 2018 Elsevier Ltd. All rights reserved.
机译:从经济和环境的角度来看,在混凝土生产中结合使用细和粗再生骨料具有多个优势。对于含再生骨料的混凝土的性能缺乏了解,这在国际标准中对结构性目的有严格的限制(甚至是禁止)。本文旨在研究细粒和粗粒再生骨料(联合)的影响,尤其着重于E模量动力学的演变及其与抗压强度和无损检测的关系。研究了再生骨料中天然骨料的比例:0%(参考混凝土),骨料总量的8%,20%和31%。通过环境响应法测量电子模量(EMM-ARM)用于监测电子模量的演变。我们还研究了这些再生骨料对E模量与抗压强度之间相关性的影响,以及两种无损检测技术:超声波脉冲速度和电导率。根据在不同固化温度下的抗压强度测量数据计算出所研究混凝土的活化能,与参考混合物相比,我们观察到再生骨料从开始12小时起对E模量演变的负面影响。高固化温度对电子模量演变的交叉影响对再生骨料的混凝土影响更大。我们的数据表明,基于抗压强度的激活能,对E模量演化的成熟度校正在等效年龄域中产生了E模量的精确叠加。 (C)2018 Elsevier Ltd.保留所有权利。

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