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Experimental and numerical study of the relative humidity effect on drying shrinkage and cracking of self-consolidating concrete

机译:对自合并混凝土干燥收缩和破裂的实验与数值研究

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摘要

The drying shrinkage of cementitious materials is a complex phenomenon that is very sensitive to boundary conditions such as relative humidity (RH). Its evolution in the range of high RH is well-known and strongly related to the capillary pressures. However, for a range of lower RH, the pressures induced by interfaces become more significant and the behavior less predictable and needs to be better understood. An experimental study is presented in this paper for which free and restrained shrinkages were measured on self-consolidating concrete for three different relative humidities: 30%, 50% and 70%. A maximum value of drying shrinkage was observed for the intermediate relative humidity. This result can be partly explained by the hydration-drying coupling at the lowest relative humidity and its effect on desorption isotherm. This was experimentally confirmed by shrinkage vs. mass loss evolution, mercury intrusion porosimetry tests and numerically by shrinkage modeling. The first model takes into account the different physical phenomena involved in shrinkage. It allows reproducing the evolution of drying shrinkage and deducing desorption isotherm for each material. Under the most severe studied condition, cracking sensitivity was the highest. The second model takes into account the aging viscoelastic behavior of material to estimate the stresses induced by restrained shrinkage. Among the concrete properties which influence cracking, the shrinkage rate appeared as a major parameter.
机译:水泥材料的干燥收缩是一种复杂的现象,对诸如相对湿度(RH)的边界条件非常敏感。它在高Rh范围内的演变是众所周知的,与毛细管压力有关。然而,对于一系列下RH,接口引起的压力变得更加重要,并且需要更低可预测的行为并且需要更好地理解。本文提出了一种实验研究,其中针对三种不同的相对湿度的自合并混凝土测量了自由和抑制的收缩:30%,50%和70%。对于中间相对湿度,观察到最大的干燥收缩值。该结果可以通过在最低相对湿度下的水化干燥耦合和其对解吸等温线的影响部分解释。通过收缩率和汞侵入孔隙瘤测定试验和数值通过收缩造型进行实验证实。第一个模型考虑了收缩涉及的不同物理现象。它允许为每种材料再现干燥收缩和推断解吸等温的演变。在最严重的研究条件下,裂缝敏感性最高。第二种模型考虑了材料的老化粘弹性行为,以估计受约束收缩诱导的应力。在影响裂化的混凝土性质中,收缩率出现为主要参数。

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