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Experimental investigation on the mechanical properties of recycled aggregate concrete reinforced by waste carbon fibers

机译:废碳纤维加固再循环骨料混凝土力学性能的实验研究

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摘要

This paper presents the mechanical properties of concrete, which are implemented in three different phases. In the first phase, the natural aggregates were replaced by recycled fine aggregates with the replacement ratio of 0, 30, 50, and 100% and 28-day compressive, splitting tensile and flexural strengths of concretes were tested. As the recycled aggregate concrete with the 30% replacement ratio showed the best mechanical properties, it was chosen for the third phase of this study. In the second and third phases, carbon fiber wastes were, respectively, added to plain concrete and recycled concrete with the volumetric percentages of 0.1, 0.2 and 0.3%. Then mechanical strengths of them were evaluated. This study includes 90 concrete specimens in total which contains 30 cubic specimens (100x100x100mm(3)), 30 concrete cylinders (100mmx200mm) and 30 prismatic beams (500x100x100mm(3)). The SEM images were taken from the fractured surface of the specimens. The results illustrate that the addition of carbon fibers to plain and recycled concrete increases the mechanical properties of concrete and prevents expansion of the initial cracks. It also increases the ductility and the energy absorption of concrete.
机译:本文介绍了混凝土的机械性能,其在三个不同的阶段实施。在第一阶段中,通过再生的细聚集体取代自然聚集体,替换比为0,30,50和100%和28天的压缩,分裂拉伸和混凝土的抗弯强度进行了测试。随着循环骨料混凝土的30%替代率显示出最佳的机械性能,选择该研究的第三阶段。在第二和第三阶段中,碳纤维废物分别加入普通的混凝土和再循环混凝土,其体积百分比为0.1,0.2和0.3%。然后评估它们的机械强度。本研究包括90个混凝土标本,其含有30个立方体标本(100x100x100mm(3)),30个混凝土缸(100mmx200mm)和30个棱镜梁(500x100x100mm(3))。 SEM图像取自样本的裂缝表面。结果说明将碳纤维添加到普通和再循环混凝土上增加了混凝土的机械性能并防止突出裂缝的膨胀。它还增加了混凝土的延展性和能量吸收。

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