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Reinforcement Systems for Carbon Concrete Composites Based on Low-Cost Carbon Fibers

机译:基于低成本碳纤维的碳纤维混凝土复合材料增强系统

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摘要

Carbon concrete polyacrylonitrile (PAN)/lignin-based carbon fiber (CF) composites are a new promising material class for the building industry. The replacement of the traditional heavy and corroding steel reinforcement by carbon fiber (CF)-based reinforcements offers many significant advantages: a higher protection of environmental resources because of lower CO 2 consumption during cement production, a longer lifecycle and thus, much less damage to structural components and a higher degree of design freedom because lightweight solutions can be realized. However, due to cost pressure in civil engineering, completely new process chains are required to manufacture CF-based reinforcement structures for concrete. This article describes the necessary process steps in order to develop CF reinforcement: (1) the production of cost-effective CF using novel carbon fiber lines, and (2) the fabrication of CF rebars with different geometry profiles. It was found that PAN/lignin-based CF is currently the promising material with the most promise to meet future market demands. However, significant research needs to be undertaken in order to improve the properties of lignin-based and PAN/lignin-based CF, respectively. The CF can be manufactured to CF-based rebars using different manufacturing technologies which are developed at a prototype level in this study.
机译:碳素混凝土聚丙烯腈(PAN)/木质素基碳纤维(CF)复合材料是建筑行业新的有前途的材料类别。用基于碳纤维(CF)的增强材料代替传统的重腐蚀金属增强材料具有许多显着优点:由于水泥生产过程中的CO 2消耗量较低,因此对环境资源的保护更高,使用寿命更长,因此对水泥的破坏更少结构部件和更高的设计自由度,因为可以实现轻巧的解决方案。但是,由于土木工程中的成本压力,需要全新的工艺链来制造基于CF的混凝土增强结构。本文介绍了开发CF增强材料的必要工艺步骤:(1)使用新型碳纤维生产线生产具有成本效益的CF,以及(2)制造具有不同几何外形的CF钢筋。发现基于PAN /木质素的CF是目前最有前途的材料,最有希望满足未来市场需求。然而,需要进行大量研究以分别改善基于木质素的和基于PAN /木质素的CF的性能。可以使用本研究在原型级别开发的不同制造技术,将CF制成基于CF的钢筋。

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