Results analysis of building structure inspection operated in corrosion environment

V. Bratoshevskaya
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Abstract

Examination of the reinforced concrete structures state under the influence of organic corrosion environments showed a direct dependence of the nature of the platelet structure of concrete on the polyhydric alcohols adsorption activity of low concentrations. The author has proved the connection between the concrete organic corrosion and its destruction by organic substances, including polyhydric alcohols, aggressive towards cement stone and concrete, especially under the combined action of climatic factors — moistening and drying, freezing and thawing; in these cases, there is an accumulation of internal defects in the concrete in the form of microcracks, which lead to a decrease in its operational properties and further destruction of structures. Field studies conducted by the author included the study of the nature, causes and sources of aggressive secretions, which were monitored, the intensity of the secretions, the limits of distribution and the places of their accumulation were determined. Samples from the damaged areas were taken to clarify the damage nature and degree in the laboratory using physical, mechanical and chemical research methods. According to the inspections results, intensive destruction of the foundation sections under the tanks of finished products, elevated road’s reinforced concrete columns under the alcohol supply pipelines, and floors on acid-resistant tiles were detected. The reasons for the penetration of aggressive solutions through leaks and broken coatings of structures are shown. The inspection also made it possible to identify the causes of aggressive emissions: leakage, insufficient sealing of containers, spills during equipment operation, and others. The author has shown the negative impact of the simultaneous exposure to corrosion environment and low temperatures, and also found that with an increase in the content of mineral additives in the binder, the adsorption of polyhydric alcohols on the cement stone decreases. The high degree of the concrete pore space filling with solutions of polyhydric alcohols is also the main reason for their rapid destruction during frost exposure. Recommendations are given to improve the durability of structures by introducing hydraulic additives into the composition of the binder.
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腐蚀环境下建筑结构检测结果分析
对钢筋混凝土结构在有机腐蚀环境影响下的状态进行的研究表明,混凝土板状结构的性质与低浓度多羟基乙醇的吸附活性直接相关。 作者证明了混凝土有机腐蚀与有机物质(包括对水泥石和混凝土具有侵蚀性的多羟基乙醇)破坏之间的联系,特别是在气候因素(湿润和干燥、冻结和解冻)的共同作用下;在这些情况下,混凝土内部缺陷以微裂缝的形式积累,导致其运行性能下降和结构的进一步破坏。作者进行的实地研究包括对侵蚀性分泌物的性质、原因和来源进行研究,对这些分泌物进行监测,确定分泌物的强度、分布范围和积聚地点。从受损区域取样,利用物理、机械和化学研究方法在实验室中明确受损性质和程度。 检查结果表明,成品罐下的地基部分、酒精供应管道下的高架道路钢筋混凝土柱以及耐酸地砖上的地板都遭到了严重破坏。这说明了腐蚀性溶液通过渗漏和破损的结构涂层渗透的原因。 通过检查还查明了造成侵蚀性排放的原因:泄漏、容器密封不严、设备运行过程中的溢出等。 作者已经证明了同时暴露在腐蚀环境和低温下的负面影响,还发现随着粘结剂中矿物添加剂含量的增加,水泥石上对多羟基乙醇的吸附会减少。混凝土孔隙被多羟基化合物溶液高度填充也是其在霜冻期间迅速破坏的主要原因。 建议在粘结剂成分中加入水力添加剂,以提高结构的耐久性。
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