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An application oriented state-of-art and research-need perspective on self-healing fibre-reinforced cementitious composites

机译:面向应用最先进的和研究 - 需要在自愈的纤维增强水泥复合材料上的视角

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The design of building structures and infrastructures is mainly based on four concepts: safety, serviceability, durability and sustainability. The latter is becoming increasingly relevant in the field of civil engineering. Reinforced concrete structures are subjected to conditions that produce cracks which, if not repaired, can lead to a rapid deterioration and would result in increasing maintenance costs to guarantee the anticipated level of performance. Therefore, self-healing concrete can be very useful in any type of structure, as it allows to control and repair cracks as soon as they to occur. As a matter of fact, the synergy between fibre-reinforced cementitious composites and self-healing techniques may result in promising solutions. Fibres improve the self-healing process due to their capacity to restrict crack widths and enable multiple crack formation. In particular, cracks smaller than 30-50 urn are able to heal completely. Moreover, in the case of High Performance Fibre Reinforced Cementitious Composites (HPFRCC), high content of cementitious/pozzolanic materials and low water-binder ratios are likely to make the composites naturally conducive to self-healing. In this framework the main goal of this paper is twofold. On the one hand, a state-of-the-art survey on self-healing of fibre-reinforced cementitious composites will be provided. This will be analysed with the goal of providing a "healable crack opening based"' design concept which could pave the way for the incorporation of healing concepts into design approaches for FRC and also conventional R/C structures. On the other hand, the same state-of-the-art will be instrumental in identifying research needs, which still have to be addressed for the proper use of self-healing fibre-reinforced cementitious composites in the construction field.
机译:建筑结构和基础设施的设计主要基于四个概念:安全,可维护性,耐用性和可持续性。后者在土木工程领域变得越来越相关。对钢筋混凝土结构进行了产生裂缝的条件,如果没有修复,可以导致快速恶化,并会导致维护成本增加,以保证预期的性能水平。因此,自我愈合混凝土在任何类型的结构中都可以非常有用,因为它允许在发生它们时立即控制和修复裂缝。事实上,纤维增强水泥复合材料和自我愈合技术之间的协同作用可能导致有前途的解决方案。纤维由于它们限制裂缝宽度的能力而改善了自愈过程,并使多种裂缝形成。特别是,小于30-50瓮的裂缝能够完全愈合。此外,在高性能纤维增强水泥复合材料(HPFRCC)的情况下,高含量的水泥/火山灰材料和低水 - 粘合剂比可能使复合材料自然有利于自我愈合。在本框架中,本文的主要目标是双重。一方面,将提供关于纤维增强水泥复合材料的自我愈合的最先进的调查。这将分析这一目标是提供“可削索的裂缝开口”的设计理念,这可能会使愈合概念纳入FRC的设计方法以及传统的R / C结构。另一方面,相同的最新技术将有助于识别研究需求,这仍然必须解决建筑领域中的自愈合纤维增强水泥组合材料的正确使用。

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