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Reducing Damage Due to Chemical Reactions in Concrete Exposed to Sodium Chloride: Quantification of a Deleterious Chemical Phase Change Formation

机译:减少因氯化钠暴露于混凝土中的化学反应而造成的损害:有害化学相变形成的定量

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摘要

It has been shown that sodium chloride can react with the tricalcium aluminate (C_(3)A) and its hydrates, leading to a formation of a deleterious chemical phase change during thermal cycling. It is believed that this chemical phase change is implicated in the premature deterioration of concrete pavements in the cold regions. This work examines the potential formation of the deleterious chemical phase change in several cementitious pastes made using different types of portland cement and supplementary cementitious materials (SCMs). The amount of the chemical phase change was quantified using a low-temperature differential scanning calorimetry. The results indicated that the formation of the chemical phase change can be reduced by using cements with low C_(3)A content. The addition of SCMs showed different effects on the chemical phase change formation. Slag and Class F fly ash could reduce the amount of the chemical phase change due to only the dilution effect whereas silica fume could significantly reduce the amount of the chemical phase change due to the dilution effect as well as pozzolanic reactions. Adversely, the addition of Class C fly ash showed a negative effect through increasing the formation of the chemical phase change.
机译:已经显示氯化钠可以与铝酸三钙(C_(3)A)及其水合物反应,从而导致在热循环过程中形成有害的化学相变。可以相信,这种化学相变与寒冷地区混凝土路面的过早老化有关。这项工作研究了使用不同类型的波特兰水泥和补充胶结材料(SCM)制成的几种胶结浆中有害化学相变的潜在形成。化学相变的量使用低温差示扫描量热法定量。结果表明,通过使用低C_(3)A含量的水泥可以减少化学相变的形成。 SCM的添加对化学相变形成表现出不同的影响。炉渣和F级粉煤灰仅由于稀释作用就可以减少化学相变的量,而硅粉由于稀释作用以及火山灰反应可以显着减少化学相变的量。相反,添加C类粉煤灰通过增加化学相变的形成表现出负面影响。

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