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Shrinkage stress in concrete under dry-wet cycles: an example with concrete column

机译:干湿循环下混凝土的收缩应力:以混凝土柱为例

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This paper focuses on the simulation of shrinkage stress in concrete structures under dry-wet environments. In the modeling, an integrative model for autogenous and drying shrinkage predictions of concrete under dry-wet cycles is introduced first. Second, a model taking both cement hydration and moisture diffusion into account synchronously is used to calculate the distribution of interior humidity in concrete. Using the above two models, the distributions of shrinkage strain and stress in concrete columns made by normal and high strength concrete respectively under dry-wet cycles are calculated. The model results show that shrinkage gradient along the radial direction of the column from the center to outer surface increases with age as the outer circumference suffers to dry. The maximum and minimum shrinkage occur at the outer surface and the center of the column, respectively, under drying condition. As wetting starts, the shrinkage strain decreases with increase of interior humidity. The closer to the wetting face, the higher the humidity and the lower the shrinkage strain, as well as the lower the shrinkage stress. As results of the dry-wet cycles acting on the outer circumference of the column, cyclic stress status is developed within the area close to the outer surface of the column. The depth of the influencing zone of dry-wet cyclic action is influenced by concrete strength and dry-wet regime. For low strength concrete, relatively deeper influencing zone is expected compared with that of high strength concrete. The models are verified by concrete-steel composite ring tests and a good agreement between model and test results is found.
机译:本文着重于干湿环境下混凝土结构收缩应力的模拟。在建模中,首先引入了干湿循环下混凝土自生和干缩预测的集成模型。其次,同时考虑水泥水化和水分扩散的模型被用来计算混凝土内部湿度的分布。使用以上两个模型,分别计算了干湿循环下普通和高强度混凝土制成的混凝土柱的收缩应变和应力分布。模型结果表明,随着外径的增大,沿圆柱体径向方向从中心到外表面的收缩梯度会随着年龄的增长而增加。在干燥条件下,最大收缩率和最小收缩率分别发生在色谱柱的外表面和中心。随着润湿开始,收缩应变随着内部湿度的增加而减小。越靠近润湿面,湿度越高并且收缩应变越低,并且收缩应力越低。由于干湿循环作用在柱子的外圆周上,在靠近柱子外表面的区域内出现了循环应力状态。干湿循环作用影响区的深度受混凝土强度和干湿状态的影响。对于低强度混凝土,与高强度混凝土相比,预期影响区域相对更深。通过混凝土-钢复合材料环试验对模型进行了验证,结果表明模型与试验结果吻合良好。

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