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Durability of recycled aggregate concrete under coupling mechanical loading and freeze-thaw cycle in salt-solution

机译:盐溶液中耦合机械载荷和冻融循环作用下再生骨料混凝土的耐久性

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摘要

In this study, a novel coupling testing protocol with separated repetitive loading and freezing-thaw cycles in salt-solution is designed to simulate coupling mechanical loading and complex environmental effects on durability and deterioration of recycled aggregate concrete (RAC). The Micromechanical properties and porosity of RAC were also characterized by scanning electron microscopy (SEM) and microhardness. The results show that the number and width of cracks of RAC and NAC under freeze-thaw cycles obviously increased with the increase of alternating times of repetitive load and the compressive stress level. The compressive strength losses for both RAC and NAC increase with the increase of compressive stress level and alternative times of repetitive load. However, the compressive strength of natural aggregate concrete (NAC) became lower than that of RAC after freeze-thaw cycles. It was found that the freeze thaw resistance of RAC seems even better than that of NAC under the same freeze-thaw attacks and cyclic mechanical loading. It indicates that after freeze-thaw cycles in salt-solution, the durability of RAC is better than that of NAC. On the other hand, the microhardness and SEM characterization results indicate that the interface transition zone (ITZ) was a weak part in both RAC and NAC, and the ITZ in NAC obviously deteriorated faster than that of RAC. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,设计了一种新颖的耦合测试方案,该方案具有独立的重复加载和盐溶液中的冻融循环,可模拟耦合机械负载以及复杂环境对再生骨料混凝土(RAC)的耐久性和劣化的影响。还通过扫描电子显微镜(SEM)和显微硬度表征了RAC的微机械性能和孔隙率。结果表明,冻融循环下RAC和NAC的裂纹数量和宽度随着重复载荷交替次数和压应力水平的增加而明显增加。 RAC和NAC的抗压强度损失都随着压应力水平的增加和重复载荷的替代时间而增加。但是,冻融循环后,天然骨料混凝土(NAC)的抗压强度低于RAC。发现在相同的冻融攻击和循环机械载荷下,RAC的抗冻融性似乎甚至比NAC更好。这表明在盐溶液中冻融循环后,RAC的耐久性优于NAC。另一方面,显微硬度和SEM表征结果表明,界面过渡区(ITZ)在RAC和NAC中都是较弱的部分,而在NAC中,ITZ的劣化速度明显快于RAC。 (C)2017 Elsevier Ltd.保留所有权利。

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