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A Concrete Carbonation Model Factoring in the Effect of Tensile Loading

机译:拉伸荷载作用下的混凝土碳化模型分解

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Concrete in realistic structures is constantly subjected to loading as well as carbon dioxide penetration. Previous experiments have testified the accelerating effect of tensile loading on concrete carbonation. However, present carbonation models that have considered tensile loading are regressed from their respective experiments and thus are limited to the specific experimental conditions. This paper proposes a carbonation model that factors in the effect of tensile loading based on 281 measurements of carbonation depths, which inherently considers a wide range of experimental conditions. First, a modified stress level is proposed to account for stress gradients in cross sections of concrete specimens. Then, a regressed linear expression between the carbonation depth amplification factor due to tensile loading and the modified stress level is established. Subsequently, through incorporating the linear expression into the simplified carbonation model proposed by Papadakis, a carbonation model that considers the effect of tensile loading is built. Finally, through comparison between the 281 experimental carbonation depths and model predictions, the proposed model is found to be acceptable.
机译:现实结构中的混凝土不断遭受装载以及二氧化碳渗透。以前的实验证实了拉伸载荷对混凝土碳化的加速效果。然而,目前已经考虑拉伸载荷的碳酸化模型从它们各自的实验回归,因此限于特定的实验条件。本文提出了一种碳酸化模型,其基于281次碳酸化深度测量的拉伸载荷效果的因素,其本身认为广泛的实验条件。首先,提出了一种改进的应力水平,以解释混凝土样本的横截面中的应力梯度。然后,建立了由于拉伸负荷和改性应力水平而导致的碳酸化深度放大因子之间的回归线性表达。随后,通过将线性表达掺入Papadakis提出的简化碳酸化模型中,一种考虑构建拉伸载荷效果的碳酸化模型。最后,通过比较281实验碳化深度和模型预测,发现所提出的模型是可接受的。

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