混凝土结构设计中的自愈技术

I. Holly, I. Abrahoim, A. Ondák
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引用次数: 0

摘要

在欧盟国家和世界上,混凝土是世界上使用最广泛的建筑材料,因为它的强度和耐久性,以及它的其他好处。混凝土也有一定的局限性。它们主要包括在一段生命周期内形成的裂纹。钢筋混凝土结构中裂缝的形成可能导致其耐久性的丧失。进入的水和化学物质会导致混凝土中预埋钢筋的基质过早降解和腐蚀。混凝土结构的定期维护和修理费用昂贵,在某些情况下是不可能的。在混凝土设计技术中加入一种自主自愈修复机制,可能是防止昂贵的维修、减少维护和提高材料耐久性的一种可能解决方案。本文从自愈混凝土的强度、耐久性、吸水性、氯化物的插入性等方面介绍了自愈混凝土中使用的几种细菌及其在不同条件下对混凝土的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SELF-HEALING TECHNOLOGY IN CONCRETE STRUCTURE DESIGN
: In EU countries and worldly, concrete is the most widely used building material in the world because of its strength and durability, among its other benefits. Concrete also has a certain amount of limitations. They mainly include crack formation over a period of lifetime. Crack formation in reinforced concrete constructions may result to loss of their durability. Ingress water and chemicals can cause premature matrix degradation and corrosion of embedded steel reinforcement in concrete. Regular maintenance and repair of concrete structures is costly and, in some cases, not at possible. One of possible solution for prevention a costly repair, reduce maintenance and increase material durability might be an inclusion of an autonomous self-healing repair mechanism in concrete design technology. This paper describes some types of bacteria, used in self-healing concrete and their effects on different conditions in concrete on the basis of its properties like strength, durability, absorption of water, insertion of chlorides and others.
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