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Long-term corrosion resistance of metallic reinforcements in concrete—a study of corrosion mechanisms based on archaeological artefacts

机译:混凝土中金属增强材料的长期耐蚀性-基于考古文物的腐蚀机理研究

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This paper presents an analytical study on ferrous reinforcements embedded in binders found in ancient buildings aged from the Gallo-Roman period to the beginning of the 20th c. AD. The study of this kind of archaeological analogues is necessary to improve knowledge on the long-term corrosion behaviour of low carbon steels that could be used in concrete to build the substructure of nuclear wastes storage or reversible disposal facilities. The corrosion system can be described as a multi-layer pattern made of metal, a dense corrosion product layer, a transformed medium and a binder. The morphological, and physico-chemical properties like composition, structure and porosities of each part were studied with different analytical methods like optical and electronical microscopies, Energy Dispersive Spectrometry coupled with Scanning Electron Microscopy, Electron Probe MicroAnalysis, Mercury poros-imetry, micro-Raman spectroscopy and micro-Diffraction under Synchrotron Radiation. Moreover, average corrosion rates were evaluated. These rates are relatively low compared to the same parameters measured on low alloyed contemporary steels and are comparable with corrosion rates noted for passivated systems.
机译:本文提出了对高卢-罗马时期至20世纪初的古老建筑中发现的粘合剂中嵌入的铁质增强材料的分析研究。广告。对这类考古类似物的研究对于提高对低碳钢长期腐蚀行为的认识是必要的,这些低碳钢可用于混凝土中,以建造核废料储存或可逆处置设施的下部结构。腐蚀系统可以描述为由金属,致密腐蚀产物层,转化的介质和粘结剂制成的多层图案。用不同的分析方法,如光学和电子显微镜检查,能量色散光谱法,扫描电子显微镜,电子探针显微分析,汞孔隙率测定法,显微拉曼光谱法,研究了每个零件的形态和物理化学性质,如组成,结构和孔隙率同步辐射下的光谱学和微衍射。此外,评估了平均腐蚀速率。与在低合金当代钢上测得的相同参数相比,这些速率相对较低,并且与钝化系统中提到的腐蚀速率相当。

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