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First steps to the molecular structure optimization of polycarboxylate ether superplasticizers: Mastering fluidity and retardation

机译:多羧酸醚超级塑化剂分子结构优化的第一步:掌握流动性和延迟

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Understanding structure function relationships of chemical admixtures is a long-standing objective of researchers in this field. In this paper, we determine how to optimize the PCE structure to change retardation without compromising workability of cementitious materials. For this, we establish a relationship between molecular structure of PCEs and yield stress of suspensions. We combine the obtained relationships with a previously published correlation between the molecular structure of PCEs and the retardation that they cause to produce an optimization plot allowing to select the molecular structure giving any desired combination of fluidity and retardation in cement pastes. This plot represents the first tool for mechanistically based molecular optimization. The advantages of using such an optimization chart, its industrial implications, as well as the potential limitations coming from its experimental development are discussed.
机译:了解化学综合函数的结构关系是该领域研究人员的长期目标。 在本文中,我们确定如何优化PCE结构以改变延迟,而不会影响水泥材料的可加工性。 为此,我们建立了PCE分子结构与悬浮液的产量应激之间的关系。 我们将所获得的关系与先前公布的PCE分子结构与它们导致产生优化图之间的相关关系,以便选择允许在水泥糊中提供任何所需的流动性和延迟组合的分子结构。 该曲线代表了基于机械基于分子优化的第一工具。 讨论了使用这种优化图的优点,其产业意义以及来自其实验发展的潜在限制。

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