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Pursuance of Workability Retention by New Superplasticizer

机译:追求新型超塑剂的可保留性

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摘要

Recently, concrete workability has become regarded as much more important because of large demands for high -strength concrete with high unit powder content and unstable quality of concrete materials. The new hyper-branched polymer was developed to provide better workability with much lower plastic viscosity of the mortar than the conventional polycarboxylate type superplasticizers. In this study, further workability improvement for a longer periods was investigated to provide better workability to the construction job site. The higher density of ethylene oxide (EO) chains adsorbed on cement surfaces was found to provide a more stable dispersion state that leads to lower viscosity of the dispersion system. However, the cement dispersion states might change with time generally due to the cement hydration process, so that the viscosity of the mortar or the concrete tends to become higher although the fluidity is maintainable. Thus, new additional EO chains were thought to be required with time on the hydrated cement surfaces to maintain a stable dispersion state. Based on this hypothesis, theoretically required EO chains were calculated and it was possible to maintain the mortar viscosity utilizing new hyper-branched polymer and hydrolysis type polymer.
机译:近来,由于对具有高单位粉末含量和混凝土材料质量不稳定的高强度混凝土的大量需求,混凝土的可加工性已变得更加重要。与常规的聚羧酸盐类高效减水剂相比,新型的超支化聚合物可以提供更好的可加工性,同时砂浆的塑性粘度低得多。在这项研究中,研究了更长时期进一步改善可使用性,以为施工现场提供更好的可使用性。发现吸附在水泥表面上的较高密度的环氧乙烷(EO)链可提供更稳定的分散状态,从而导致分散体系的粘度降低。然而,通常由于水泥的水合过程,水泥的分散状态可能随时间变化,因此尽管可以保持流动性,但砂浆或混凝土的粘度趋于变高。因此,认为随着时间的流逝在水合水泥表面上需要新的附加EO链以维持稳定的分散状态。基于该假设,计算了理论上需要的EO链,并且有可能利用新型的超支化聚合物和水解型聚合物来保持砂浆粘度。

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