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LIFETIME PREDICTION OF REINFORCED CONCRETE STRUCTURES IN CARBONATION ENVIRONMENTS CARBONATION MODELLING VS AIR PERMEABILITY MODELLING

机译:碳化环境中钢筋混凝土结构的寿命预测碳酸化建模与空气渗透性建模

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摘要

This article compares two models for the prediction of lifetimes of reinforced concrete structures in carbona­tion environments based on different tests: carbonation test-based modelling and air permeability test-based modelling. The study also includes experimental testing of five concrete mixes with different types of cement in order to validate the models using safety factors. The tests included compressive strength, accelerated carbonation and air permeability. Both models are defined in a European standard as being alternative to each other, meaning that their results for the same concrete composition and the same environment should converge. The results show that both current models can scarcely constitute alternative to each other. Design lifetime results are far from similar for each concrete mix and each exposure class. The different nature of each test – accelerated carbonation and air permeability – and their different characteristic such as the scattering of results and the unrelated parameters of the modelling equations are some of the features discussed, including the possibility of using different safety factors as function of the model and definition of possible correlation between tests.
机译:本文基于不同的测试,比较了两种模型用于预测碳化环境中的碳化环境中的钢筋混凝土结构的寿命:基于碳酸化测试的建模和透气性测试的建模。该研究还包括使用不同类型水泥的五种混凝土混合物的实验测试,以便使用安全因子验证模型。该试验包括抗压强度,加速碳酸化和透气性。这两种型号都以欧洲标准定义为彼此的替代,这意味着它们对相同的混凝土组成和相同环境的结果应该会聚。结果表明,这两个目前的模型都不能互相构成替代品。设计寿命结果远非相似,每个混凝土混合和每个曝光等级都是相似的。每个测试加速碳化和透气性的不同性质 - 以及它们的不同特性,例如散射的结果和建模方程的不相关参数是讨论的一些特征,包括使用不同安全因子的可能性测试中可能相关性的模型和定义。

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