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Influence of coupled effects between flexural tensile stress and carbonation time on the carbonation depth of concrete

机译:弯曲拉伸应力与碳化时间的耦合效应对混凝土碳化深度的影响

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摘要

Concrete stress has a great influence on the depth of carbonation, thus it is of vital importance to investigate the carbonation depth model under concrete stress state. Generally, the concrete structure has time-dependent characteristics, since as concrete ages, its strength, stiffness and other properties will also change. Therefore, under the same concrete stress and different carbonation time, the influence of concrete stress on carbonation depth will be different. To investigate the influence of the coupled effects between flexural tensile stress and carbonation time on the carbonation depth of concrete, a model of stress influence coefficient considering the influence of carbonation time was established by using the existing experimental data, and a modified carbonation depth model of concrete was proposed. Results indicated that the carbonation depth increased with an increase in flexural tensile stress level. As carbonation time increased under the same flexural tensile stress level, the stress influence coefficient decreased, and the computed results of the model of stress influence coefficient considering carbonation time were in good agreement with the experimental data. The maximum influence of the mix proportions of concrete on stress influence coefficient was limited, which was approximately within 10%. The modified carbonation depth model was reasonable and had high prediction accuracy. (C) 2018 Elsevier Ltd. All rights reserved.
机译:混凝土应力对碳化深度有很大影响,因此研究混凝土应力状态下的碳化深度模型具有至关重要的意义。通常,混凝土结构具有随时间变化的特性,因为随着混凝土的老化,其强度,刚度和其他特性也会发生变化。因此,在相同的混凝土应力和不同的碳化时间下,混凝土应力对碳化深度的影响会有所不同。为了研究弯曲拉伸应力与碳化时间之间的耦合效应对混凝土碳化深度的影响,利用已有的实验数据建立了考虑碳化时间影响的应力影响系数模型,并采用修正后的碳化深度模型进行了研究。提出了具体的建议。结果表明碳化深度随着弯曲拉伸应力水平的增加而增加。在相同的弯曲拉伸应力水平下,随着碳化时间的增加,应力影响系数减小,考虑碳化时间的应力影响系数模型的计算结果与实验数据吻合良好。混凝土的配合比对应力影响系数的最大影响是有限的,大约在10%以内。改进后的碳化深度模型是合理的,具有较高的预测精度。 (C)2018 Elsevier Ltd.保留所有权利。

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