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Numerical modelling of bond behaviour in RC structures affected by reinforcement corrosion

机译:钢筋腐蚀下钢筋混凝土结构粘结行为的数值模拟

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Steel corrosion in reinforced concrete structures leads to severe degradation processes which usually affect both the ultimate and serviceability limit state performance of the whole construction. Numerical modelling of such a behaviour requires effective non linear models able to capture all the main effects of corrosion (i.e. cracking, reduction in bond strength, reduction in steel cross-section, bond degradation, etc.). This paper discusses these topics by focusing on the effects of corrosion on bond behaviour. In particular, a coupled mechanical-environmental damage model is used to simulate the deterioration of concrete (i.e. cover cracking and reduction of mechanical properties), while the effects of corrosion on bond behaviour have been dealt with using two different approaches, one based on a "frictional type" law and the other on a "damage type" law. A comparison between experimental pull-out test data and numerical results verifies that the proposed procedures can effectively simulate the effects of corrosion on bond behaviour, mainly for the "damage type" approach. Finally the numerical simulation of some experimental tests of corroded beam has been carried out.
机译:钢筋混凝土结构中的钢腐蚀会导致严重的降解过程,这通常会影响整个建筑的极限状态和可使用性极限状态。对这种行为进行数值建模需要有效的非线性模型,该模型必须能够捕获腐蚀的所有主要影响(即开裂,粘结强度降低,钢横截面减小,粘结降解等)。本文通过重点讨论腐蚀对键合行为的影响来讨论这些主题。特别是,使用机械和环境的耦合损伤模型来模拟混凝土的劣化(即覆盖层开裂和机械性能的降低),而腐蚀对粘结性能的影响已使用两种不同的方法进行了处理,一种基于《摩擦式》法与另一种关于《损伤式》法。通过对实验拉拔试验数据和数值结果进行比较,验证了所提出的过程可以有效地模拟腐蚀对键合行为的影响,主要针对“损伤类型”方法。最后对腐蚀梁的一些试验进行了数值模拟。

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