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Effects of Nano-SiO2 and SAP on Hydration Process of Early-Age Cement Paste Using LF-NMR

机译:用LF-NMR纳米SiO2和SAP对早期水泥浆料水合过程的影响

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摘要

The effects of nano-SiO2 and superabsorbent polymer on the hydration process of early-age cement paste are investigated through the physically bound water evolution test by means of the low-field nuclear magnetic resonance technology. The test results show that the hydration process can be characterized by four-stage patterns based on the zero points of the second-order differential hydration curve, i.e., the initial, accelerated, decelerated, and steady periods. The beginning time of each stage is postponed and the hydration duration is prolonged with an increasing water to cement ratio. The beginning time of each stage and the hydration duration are shortened with an increasing content of nano-SiO2. And the beginning time of each stage and the hydration duration are prolonged with an increasing content of superabsorbent polymer. Based on the test data and the Avrami–Erofeev model, a modified hydration model taking the influence of nano-SiO2 and SAP into account is proposed, and the predicted results are consistent with the test results.
机译:通过低场核磁共振技术研究了纳米-SiO2和超吸收性聚合物对早期水泥浆料的水化过程的影响。测试结果表明,水合过程可以通过基于二阶差分水合曲线的零点的四级图案来表征,即初始,加速,减速和稳定的时期。推迟每个阶段的开始时间,水合持续时间随着水泥比的增加而延长。随着纳米SiO2的增加,每个阶段和水合持续时间的开始时间缩短。并且随着超吸收性聚合物的增加,每个阶段和水合持续时间的开始时间延长。基于测试数据和AVRAMI-EROFEEV模型,提出了一种经修饰的水合模型考虑了纳米SiO2和SAP的影响,并且预测结果与测试结果一致。

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