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Modeling of the influence of transverse cracking on chloride penetration into concrete

机译:横向裂缝对氯离子渗入混凝土影响的建模

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Concrete service life models have proliferated in recent years due to increased interest in designing infrastructure elements with at least a 75-year service life, along with greater emphasis on life-cycle costing. While existing models consider a variety of concrete material and environmental factors, at varying levels of complexity, in predicting the time until the onset of chloride-induced corrosion of the steel reinforcement, the influence of cracking is generally beyond their current scope. This paper presents a preliminary strategy for examining the influence of transverse cracking on chloride ion penetration into concrete that includes a graphical approach for adjusting the predicted service life provided by current models to reflect this influence. Comparison to experimental data for saturated concretes indicates that the contributions of binding of the chloride ions by the cement paste play a significant role in slowing the ingress of chlorides and should be accounted for in any modeling efforts.Published by Elsevier Ltd.
机译:近年来,由于对设计至少具有75年使用寿命的基础架构元素的兴趣日益浓厚,并且更加重视生命周期成本,因此混凝土使用寿命模型激增。尽管现有模型考虑了各种混凝土材料和环境因素,但复杂程度各不相同,因此在预测直到氯化物引起钢筋腐蚀开始的时间时,开裂的影响通常超出了当前范围。本文提出了一种初步的策略,以检查横向裂纹对氯离子渗透到混凝土中的影响,其中包括采用图形方法来调整当前模型提供的预测使用寿命,以反映这种影响。与饱和混凝土的实验数据进行比较表明,水泥浆对氯离子的结合作用在减缓氯的进入方面起着重要作用,并且在任何建模工作中都应予以考虑.Elsevier Ltd.

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