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首页> 外文期刊>International Journal of Technology >Effects of Bleeding on the Corrosion of Horizontal Steel Bars in Reinforced Concrete Column Specimens
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Effects of Bleeding on the Corrosion of Horizontal Steel Bars in Reinforced Concrete Column Specimens

机译:出血对钢筋混凝土柱标本水平钢筋腐蚀的影响

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摘要

The durability of reinforced concrete has proven to be predominantly influenced by its resistance against the ingress of harmful substances such as chloride ions, carbon dioxide and moisture. The corrosion of steel bars which occurs especially in marine environments is likely to be severe, depending on the availability of oxygen and the moisture consumed by cathodic reactions. This study aims to investigate the effects of bleeding on the corrosion of horizontal steel bars placed in reinforced concrete column specimens. The issue was examined through electro-chemical tests, including half-cell potential, polarization resistance and corrosion current density, conducted using specimens in which corrosion was induced via dry and wet (NaCl 10%) cycles. The presence or absence of copper slag fine aggregate and fly ash replacement was employed as an experimental parameter. The results suggest that the corrosion of horizontal steel bars in the upper part of the column concrete specimens was adversely affected, even in the case of OPC specimens with relatively lower bleeding water. This was attributed to lower resistance against the ingress of corrosive substances, especially in such locations. In the case of fly ash mixtures, resistance to corrosion was significantly improved owing to lower oxygen permeability of less than 1.0×10-11mol/cm2/sec, measured via the cathodic polarization technique. The replacement of fly ash is effective in facilitating more uniform quality in the column specimens due to a lower level of bleeding water and higher resistance to segregation and pozzolanic reactions.
机译:钢筋混凝土的耐久性已被证明主要受其对抗氯离子,二氧化碳和水分等有害物质进入的抵抗的影响。特别是在海洋环境中发生的钢筋的腐蚀可能是严重的,这取决于氧气的可用性和阴极反应消耗的水分。本研究旨在探讨出血对钢筋混凝土柱样品水平钢筋腐蚀的影响。通过电化学测试检查该问题,包括使用样品进行半电池电位,偏振电阻和腐蚀电流密度,其中通过干燥和湿(NaCl 10%)循环诱导腐蚀。使用铜渣细聚集体和粉煤灰更换的存在或不存在作为实验参数。结果表明,即使在具有相对较低的出血水的OPC样品的情况下,柱子混凝土样本的上部横向影响水平钢筋的腐蚀也受到不利影响。这归因于耐腐蚀性物质的抗性抵抗,特别是在这些地点。在粉煤灰混合物的情况下,由于低于1.0×10-11mol / cm 2 /秒,通过阴极偏振技术测量的较低氧气渗透性,耐腐蚀性显着改善。粉煤灰的替代是有效促进柱试样中更均匀的质量,由于较低的出血水和对偏析和偏析和火山灰反应的抗性较高。

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