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Interest of using a model combining carbonation/chloride ingress and depassivation to better anticipate the rehabilitation of concrete structures

机译:使用模型结合碳酸/氯化物进入和Depassivation来更好地预期混凝土结构的康复的兴趣

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Mastering and optimizing the durability of concrete structures and also the rehabilitation of concrete structures is a major challenge for all actors of the concrete construction field. An experimental program is conducted to get a complete characterization of the mechanical, chemical and physical properties of four concretes and their performances towards the main aggressive environment for the reinforcement corrosion. The evaluated durability properties are chloride migration, porosity, water absorption and carbonation. Moreover, for each concrete, some reinforced specimens are manufactured to measure the electrochemical properties of the reinforcement such as potential. The project achievements are used to optimize and improve the durability model SDReaM-crete developed by Cerib and LMDC. This model can simulate the migration of chlorides, the combination of this migration with the mechanism of carbonation and the corrosion of reinforcing bars according to wetting-drying cycles. Finally, the present work aims to optimize the sizing of the cover thickness for new structures and to facilitate the lifespan prediction for existing structures. This paper describes the model SDReaM-crete and its recent improvements. Some experimental results and some interpretations as well as simulations made with SDReaM-crete are also presented.
机译:掌握和优化混凝土结构的耐久性以及混凝土结构的康复是混凝土施工领域的所有演员的重大挑战。进行实验计划,以便完全表征四种混凝土的机械,化学和物理性质及其对加固腐蚀的主要侵蚀环境的性能。评估的耐久性是氯化物迁移,孔隙率,吸水和碳酸化。此外,对于每个混凝土,制造一些增强标本以测量增强件的电化学性质,例如电位。项目成果用于优化和改进CERIB和LMDC开发的耐久性模型SDREAM-CRETE。该模型可以模拟氯化物的迁移,这种迁移的组合与碳酸化机制和加强杆的腐蚀根据润湿干燥循环。最后,本作工作旨在优化新结构的覆盖厚度的尺寸,并促进现有结构的寿命预测。本文介绍了SDREAM-CRETE模型及其最近的改进。还提出了一些实验结果和一些用SDREAM-CRETE制作的解释以及模拟。

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