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(103625)Measuring chemical shrinkage of ordinary Portland cement pastes with high water-to-cement ratios by adding cellulose nanofibrils

机译:(103625)通过添加纤维素纳米纤维,用高水泥浆料测量普通波特兰水泥浆料的化学收缩

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摘要

Chemical shrinkage is an important way to study the hydration kinetics of cement. However, the measurement of chemical shrinkage for cement pastes with high water-to-cement ratio (w/c) faces a significant bleeding issue. This study demonstrates the use of cellulose nanofibrils (CNF) to create a stable structure that can support cement particles and let them be hydrated without settling. The measured chemical shrinkage curves for the 0.5 w/c cement pastes with and without CNF are very similar at early ages (e.g., 3 d), which implies that the chemical effect of CNF on cement hydration is small in the short term; therefore, the use of CNF allows study of chemical shrinkage for high w/c cement pastes at the early ages. The results show that with the increase of w/c, the main hydration peak is delayed and the post-peak stage is prolonged. In the long term (e.g., after 3 days), the measured chemical shrinkage for high w/c is higher than the low w/c. Similarly, the degree of hydration curves show that, with more water, cement hydration is eventually much enhanced.
机译:化学收缩是研究水泥水合动力学的重要途径。然而,具有高水泥浆料(w / c)的水泥浆料的化学收缩测量面临显着的出血问题。该研究表明使用纤维素纳米纤维(CNF)来产生稳定的结构,可以支持水泥颗粒,并在不沉降的情况下进行水合。测量的0.5W / C水泥浆料的测量的化学收缩曲线在早期(例如,3d)的早期(例如,3d)非常相似,这意味着CNF在短期内CNF对水泥水合物的化学效果;因此,CNF的使用允许在早期的年龄在早期进行高W / C水泥浆料的化学收缩。结果表明,随着W / C的增加,主水合峰被延迟,延长峰值阶段。在长期(例如3天后),高w / c的测量化学收缩高于低w / c。同样,水合曲线的程度表明,随着水的水泥,最终增强了水泥水合。

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