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Control of Cracking in Textile Reinforced Concrete with Unresin Carbon Fibers

机译:无领碳纤维纺织钢筋混凝土开裂控制

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摘要

Textile reinforced concrete (TRC) is an emerging construction material with interesting potential concerning sustainability, providing corrosion-free and lightweight solutions. Ordinarily, fiber bundles, impregnated with resin, are used. In this research the performance of reinforcement with unresin fibers is investigated. Control of cracking is considered the key performance factor and is assessed through tensile testing. However, economic and environmental aspects are addressed as well. Then, four different mixes/matrices were considered, without the addition of special/expensive admixtures. TRC ties were subject to direct tension tests, with load and deformation monitoring to assess the influence of mechanical reinforcement ratio on the cracking, failure and toughness of these composites, as well as of the matrix properties on the maximum load. It was observed that at a macro-level TRC behaves like conventional reinforced concrete, concerning crack control. Based on the maximum loads attained at the different composites, it was found that this particular TRC is economically viable. It is suggested that matrix workability may influence the maximum load.
机译:纺织钢筋混凝土(TRC)是一种新兴建筑材料,具有有趣的可持续性,提供无腐蚀和轻质解决方案。通常,使用浸渍有树脂的纤维束。在这项研究中,研究了利用unlesin纤维的增强性能。裂缝的控制被认为是关键性能因数,并通过拉伸测试进行评估。但是,也解决了经济和环境方面。然后,考虑了四种不同的混合/矩阵,而不添加特殊/昂贵的混合物。 TRC系带受到直接张力试验,具有负载和变形监测,以评估机械加固比对这些复合材料的裂缝,破坏和韧性的影响,以及最大载荷的基质特性。观察到,在宏观水平的TRC的行为中,如常规钢筋混凝土,涉及裂缝控制。基于不同复合材料所达到的最大载荷,发现该特定TRC在经济上可行。建议矩阵可加工性可能影响最大负载。

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