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A REVIEW ON DEGRADATION MECHANISM AND LIFE ESTIMATION OF CIVIL STRUCTURES

机译:土木结构的退化机理与寿命估算研究进展

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Reinforced concrete (RC) is widely used in civil construction since it is the most versatile, economical and durable construction material of all times. Reinforcement corrosion has been widely reported to be one of the major durability problems, mainly when the rebar in the concrete is exposed to the chlorides, either contributed from the concrete ingredients or penetrated from the surrounding chloride-bearing environment. Carbonation of concrete or penetration of acidic gases into the concrete causes reinforcement corrosion. Besides these, factors related to the concrete quality, such as water/cement (w/c) ratio, cement content, impurities in the concrete ingredients, presence of surface cracks, etc. and those related to external environment, such as moisture, oxygen, humidity, temperature, bacterial attack, stray currents, etc., affect reinforcement corrosion. In this paper, a review is presented on the mechanisms of degradation of concrete, techniques used to monitor reinforcement corrosion, and empirical models and experimental methods to predict the remaining service life of structures.
机译:钢筋混凝土(RC)是有史以来用途最广泛,最经济和耐用的建筑材料,因此广泛用于民用建筑。据报道,钢筋腐蚀是主要的耐久性问题之一,主要是当混凝土中的钢筋暴露于氯化物时,该氯化物要么来自混凝土成分,要么被周围含氯的环境渗透。混凝土的碳化或酸性气体渗入混凝土会引起钢筋腐蚀。除此之外,与混凝土质量有关的因素,例如水/水泥(w / c)比,水泥含量,混凝土配料中的杂质,表面裂缝的存在等,以及与外部环境有关的因素,例如水分,氧气,湿度,温度,细菌侵袭,杂散电流等会影响钢筋腐蚀。本文对混凝土的降解机理,监测钢筋腐蚀的技术以及预测结构剩余使用寿命的经验模型和实验方法进行了综述。

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