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Action Mechanism of Superplasticizer in Consideration of Early Hydration of Cement

机译:考虑水泥早期水化的高效减水剂作用机理

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Superplasticizers (SPs) are widely used in various concrete made in Japan to decrease the amount of water required for cement mixing. The use of hot-weather concrete is increasing. The number of interstitial cement phases, such as the aluminate and ferrite phases, will be increased to treat waste and byproducts in the cement industry. In such cases, early hydration will affect cement phase fluidity. Therefore, chemical admixtures, especially SPs, are gaining importance. It has been reported that changes in concrete fluidity with time are affected by SP molecular structure. However, the mechanisms of fluidity change is still not completely clarified. It is therefore necessary to study the interaction between cement and SPs. This study focuses on the mechanism of SP action, especially during early hydration. Polycarboxy-late-based SP showed better fluidity retention than naphthalene sulfonate-based SP. This difference in fluidity-retaining performance is related to the amount of SP adsorbed per unit area. The fluidity reduction of cement paste with naphthalene sulfonate-based SP is attributed to a decrease in residual SP concentration in the liquid phase.
机译:高效减水剂(SP)广泛用于日本制造的各种混凝土中,以减少水泥混合所需的水量。高温天气混凝土的使用正在增加。间隙水泥相的数量(例如铝酸盐和铁素体相)将增加,以处理水泥工业中的废物和副产品。在这种情况下,早期水化会影响水泥相的流动性。因此,化学外加剂,特别是SP,变得越来越重要。据报道,混凝土流动性随时间的变化受SP分子结构的影响。但是,流动性变化的机制仍未完全阐明。因此,有必要研究水泥与SP之间的相互作用。这项研究的重点是SP作用的机制,尤其是在早期补水过程中。与基于萘磺酸盐的SP相比,基于聚羧酸盐的SP表现出更好的流动性保持性。流动性保持性能的这种差异与每单位面积吸附的SP量有关。具有基于萘磺酸盐的SP的水泥浆的流动性降低归因于液相中残余SP浓度的降低。

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