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Degree of hydration and gel/space ratio of high-volume fly ash/cement systems

机译:大体积粉煤灰/水泥系统的水合度和凝胶/空间比

摘要

Although fly ash has been widely used in concrete as a cement replacement, little work has been done on determining the degree of hydration of high-volume fly ash/cement (FC) systems. In the present study, the degree of hydration of the cement in Portland cement (PC) paste was obtained by determining the non-evaporable water (Wn) content. The degree of reaction of the fly ash in FC pastes was determined using a selective dissolution method. Based on the relation between the degree of cement hydration and effective water-to-cement (w/c) ratio, the degree of hydration of the cement in FC pastes was also estimated. It was found that high-volume fly ash pastes underwent a lower degree of fly ash reaction, and in the pastes with 45% to 55% fly ash, more than 80% of the fly ash still remained unreacted after 90 days of curing while the hydration of the cement in high-volume fly ash pastes was enhanced because of the higher effective w/c ratio for the paste. This effect was more significant for the pastes with lower water-to-binder (w/b) ratios. Thus, preparing high-volume fly ash concrete at lower w/b ratios can result in less strength losses. This paper also introduces a model to describe the relationship between the w/c ratio and the degree of cement hydration and gel/space ratio. The gel/space ratios of the FC pastes, evaluated based on the proposed model, were found to be consistent with the gel/space ratio of PC pastes in terms of the relationship with compressive strength. The gel/space ratio data correlated (inversely) linearly with mercury intruded porosity, but the former correlated more with compressive strength than the latter.
机译:尽管粉煤灰已广泛用作混凝土的水泥替代品,但在确定高容量粉煤灰/水泥(FC)系统的水合度方面所做的工作很少。在本研究中,通过确定非蒸发水(Wn)含量来获得硅酸盐水泥(PC)浆料中水泥的水合度。使用选择性溶解方法确定FC糊料中粉煤灰的反应程度。基于水泥水合度与有效水灰比(w / c)之比的关系,还可以估算FC浆料中水泥的水合度。已发现,高含量的粉煤灰浆料的粉煤灰反应程度较低,在粉煤灰为45%至55%的浆料中,超过90%的粉煤灰在固化90天后仍未反应,而大体积粉煤灰浆料中水泥的水合作用得到增强,因为该浆料的有效w / c比更高。对于水/粘合剂(w / b)比率较低的糊剂,此效果更为显着。因此,以较低的w / b比制备大量的粉煤灰混凝土可以减少强度损失。本文还介绍了一个模型,以描述水灰比与水泥水化度和凝胶/空隙比之间的关系。根据建议的模型评估,发现FC胶的凝胶/空间比与PC胶的凝胶/空间比在抗压强度方面是一致的。凝胶/空间比数据与汞侵入的孔隙率线性相关(成反比),但前者与压缩强度的相关性大于后者。

著录项

  • 作者

    Lam L; Wong YL; Poon CS;

  • 作者单位
  • 年度 2000
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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