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Experimental Analysis of Reinforcement Rust in Cement under Corrosive Environment

机译:腐蚀环境下水泥钢锈锈的实验分析

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摘要

In this work, the microstructure characteristics of corrosion products of reinforcement under a corrosive environment with chloride, carbonation and the combination of chloride-carbonization were studied by x-ray photoelectron spectroscopy (XPS) and scanning electron microscopy/energy spectroscopy (SEM-EDX). The results indicate that the outside of the passivation film reacts with the cement slurry to produce Fe–SiO4 in all three corrosive environments. The inner side is not completely corroded. The morphology of the corrosion is different in the three environments. In a chloride environment, corrosion products have obvious cracks, and the local layered structure is dense. In a carbonation environment, the surface of the steel corrosion shows a uniform granular structure and loose texture. With the combination of chloride and combination, the surface of the structural layer of steel corrosion was uneven and accompanied by protrusions, cracking and spalling occurred. The composition of the corrosion substances in the three corrosion environments are mainly composed of FeO, Fe3O4, Fe2O3 and Fe–SiO4. The content of iron oxide increases from a chloride salt, carbonization to the composite environment, indicating that the corrosion degree intensifies successively.
机译:在这项工作中,通过X射线光电子能谱(XPS)和扫描电子显微镜/能谱(SEM-EDX)研究了抗氯化物,碳化和氯化物碳化的腐蚀性环境下腐蚀性腐蚀腐蚀产品的微观结构特性。 。结果表明钝化膜的外部与水泥浆料反应以在所有三种腐蚀性环境中产生Fe-SiO4。内侧没有完全腐蚀。三种环境中腐蚀的形态不同。在氯化物环境中,腐蚀产品具有明显的裂缝,局部分层结构是密集的。在碳化环境中,钢腐蚀的表面显示出均匀的颗粒结构和松散的质地。随着氯化物和组合的组合,钢腐蚀结构层的表面不均匀,伴随着突起,裂缝和剥落发生。三种腐蚀环境中的腐蚀物质的组成主要由FeO,Fe3O4,Fe2O3和Fe-SiO4组成。氧化铁含量从氯化物盐,碳化与复合环境增加,表明腐蚀程度连续增强。

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