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Cracking of the concrete cover due to reinforcement corrosion: A two-dimensional lattice model study

机译:钢筋锈蚀导致混凝土表层开裂:二维格子模型研究

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摘要

Corrosion of steel reinforcement is a serious problem for durability and serviceability of reinforced concrete. As the reinforcing steel corrodes, it expands and exerts pressure on the surrounding concrete cover, causing tensile stresses in concrete. This ultimately leads to cracking and spalling of the concrete cover, further exacerbating the durability problems of a structure and increasing the rate of its deterioration. In order to study cracking mechanisms due to reinforcement corrosion, mechanics of the problem was implemented in a two-dimensional lattice model. Heterogeneous nature of concrete was taken into account in the mechanical analysis. Firstly, the case of uniform corrosion was tested, and successfully verified using experimental data from the literature. Also, it was found that cracking pressure is not a deterministic value, and depends on local mechanical parameters. Secondly, two pitting scenarios were tested and compared to the uniform corrosion case. Pitting results in significant reduction of cracking pressure, compared to the uniform corrosion case. Based on the proposed model, some conclusions with implications for engineering practice were drawn.
机译:钢筋的腐蚀对于钢筋混凝土的耐久性和可使用性是一个严重的问题。随着钢筋的腐蚀,它会膨胀并向周围的混凝土表层施加压力,从而在混凝土中产生张应力。这最终导致混凝土覆盖层开裂和剥落,进一步加剧了结构的耐久性问题并增加了其劣化率。为了研究由于钢筋腐蚀引起的开裂机理,在二维晶格模型中实现了该问题的力学。力学分析考虑了混凝土的异质性。首先,对均匀腐蚀的情况进行了测试,并使用来自文献的实验数据成功地进行了验证。另外,发现破裂压力不是确定性值,而是取决于局部机械参数。其次,测试了两种点蚀情况,并将其与均匀腐蚀情况进行了比较。与均匀腐蚀情况相比,点蚀可显着降低开裂压力。在提出的模型的基础上,得出了一些对工程实践具有启示意义的结论。

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