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Effect of blast furnace slag on self-healing of microcracks in cementitious materials

机译:高炉矿渣对胶凝材料微裂纹自愈的影响

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The physico-chemical process of self-healing in blast furnace slag cement paste was investigated in this paper. With a high slag content i.e., 66% in cement paste and saturated Ca(OH)_2 solution as activator, it was found that the reaction products formed in cracks are composed of C- S-H, ettringite, hydrogarnet and OH-hydrotal-cite. The fraction of C - S - H in the reaction products is much larger than the other minerals. Large amount of ettringite formed in cracks indicates the leaching of SO_4~(2-) ions from the bulk paste and consequently the recrystallization. Self-healing proceeds fast within 50 h and then slows down. According to thermodynamic modeling, when the newly formed reaction products are carbonated, the filling fraction of crack increases first and then decreases. Low soluble minerals such as silica gel, gibbsite and calcite are formed. Compared to Portland cement paste, the potential of self-healing in slag cement paste is higher when the percentage of slag is high.
机译:本文研究了高炉矿渣水泥浆自修复的理化过程。以高的矿渣含量,即水泥浆中的66%的渣和饱和的Ca(OH)_2溶液作为活化剂,发现在裂纹中形成的反应产物由C-S-H,钙矾石,水榴石和OH-水滑石组成。反应产物中C-S-H的比例远大于其他矿物。裂纹中形成的大量钙矾石表明,SO_4〜(2-)离子从块状浆料中浸出,从而发生重结晶。自愈在50小时内快速进行,然后放慢速度。根据热力学模型,当新形成的反应产物被碳酸化时,裂纹的填充率先增加然后减少。形成了低溶性矿物,例如硅胶,三水铝石和方解石。与矿渣水泥浆相比,当矿渣比例高时,矿渣水泥浆中的自愈潜力更高。

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