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首页> 外文期刊>Magazine of Concrete Research >Modelling deterioration of structural behaviour of reinforced concrete beams under saline environment corrosion
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Modelling deterioration of structural behaviour of reinforced concrete beams under saline environment corrosion

机译:盐环境腐蚀下钢筋混凝土梁结构性能退化建模

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摘要

In the assessment of existing structures the likely future deterioration of strength and stiffness is of interest. For reinforced concrete beams one of the most important influencing factors is the loss of reinforcement cross-sectional area at critical locations. Because corrosion is a long-term process for well-designed structures, there is only limited field experience available on which to draw and with which to make empirical rules. The considerable research effort in corrosion of reinforcement in concrete structures has focused mainly on the rate of migration of chloride ions from the environment through the concrete to the corroding steel surface. This will estimate the time before reinforcement corrosion becomes significant but does not provide the rate of structural deterioration. In the present paper a method is proposed for estimating structural deterioration, based on evidence that (a) reinforcement corrosion causes internal damage to and loss of bond with the surrounding concrete and (b) chloride diffusion is influenced by stresses set up in the concrete by external loading. Both these factors affect the rate of chloride migration locally and hence the amount of corrosion and material strength loss at any point in time. The proposed method is outlined and an example application given. Reasonably good agreement between the results of the proposed procedure and the few experimental results was obtained.
机译:在评估现有结构时,未来强度和刚度可能会下降是令人关注的。对于钢筋混凝土梁,最重要的影响因素之一是在关键位置的钢筋截面积的损失。由于腐蚀是设计良好的结构的长期过程,因此只能根据有限的现场经验进行绘制,并以此为依据制定经验规则。在混凝土结构中钢筋腐蚀方面的大量研究工作主要集中在氯离子从环境穿过混凝土到腐蚀的钢表面的迁移速率。这将估计钢筋腐蚀变得明显之前的时间,但不会提供结构劣化的速度。在本文中,提出了一种评估结构劣化的方法,该证据基于以下证据:(a)钢筋腐蚀对周围混凝土造成内部破坏并与周围混凝土失去粘结;(b)氯离子的扩散受混凝土中应力的影响。外部加载。这两个因素都会影响氯化物的局部迁移速率,从而影响任何时间点的腐蚀量和材料强度损失。概述了所提出的方法并给出了示例应用。所提出的方法的结果与少量实验结果之间取得了合理的良好一致性。

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