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Novel cement-based composites for the strengthening and repair of concrete structures

机译:用于增强和修复混凝土结构的新型水泥基复合材料

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摘要

In the last 30 years the construction industry branch having to do with the repair, protection and strengthening of concrete has experienced explosive growth. This has been driven by the need to reverse the deterioration of, damage to, and defects in concrete structures as well as by changes in building use and code requirements. Accordingly, there is great need to improve the materials and techniques used in repair and strengthening. This article focuses on novel high-performance fibre-reinforced cement based-composites (HPFRCCs) for strengthening and repair of buildings and infrastructure made of concrete and, in some cases, masonry. Two new types of such material, textile-reinforced concrete (TRC) and strain-hardening cement-based composites (SHCCs), are introduced, highlighting with particular care the benefits and challenges of using HPFRCCs. Specific compositions and production techniques of the composites are presented, followed by a discussion of their mechanical properties in respect of their use on the job. Some reference is made to approaches in considering the load-carrying capacity of the strengthening layers made of HPFRCCs. Furthermore, the transport properties through layers of cracked composites are described as the basis for estimating how well they can protect concrete and its steel reinforcement against ingressing fluids and gases, i.e., against their deterioration. Finally, a number of practical applications of TRC and SHCC are described in order to demonstrate their great potential in the field of rehabilitation of existing concrete structures.
机译:在过去的30年中,与混凝土的修复,保护和加固有关的建筑业分支机构经历了爆炸性的增长。这是由于需要扭转混凝土结构的恶化,损坏和缺陷,以及建筑物用途和法规要求的变化。因此,非常需要改进用于修理和加固的材料和技术。本文重点介绍新型高性能纤维增强水泥基复合材料(HPFRCC),用于增强和维修混凝土以及在某些情况下为砖石结构的建筑物和基础设施。引入了两种新型材料,即纺织增强混凝土(TRC)和应变硬化水泥基复合材料(SHCC),特别强调了使用HPFRCC的好处和挑战。介绍了复合材料的具体组成和生产技术,然后讨论了其在工作中的机械性能。在考虑由HPFRCC制成的加强层的承载能力时,参考了一些方法。此外,描述了通过破裂的复合材料层的运输性能,作为估计它们可以如何良好地保护混凝土及其钢增强材料免受侵入的流体和气体,即防止其劣化的基础。最后,描述了TRC和SHCC的许多实际应用,以证明它们在现有混凝土结构修复领域的巨大潜力。

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