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Squeeze flow coupled with dynamic pressure mapping for the rheological evaluation of cement-based mortars

机译:挤压流与动态压力测绘耦合,用于水泥基砂浆的流变评估

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摘要

The squeeze flow test provides relevant information about the macroscopic rheological behavior of mortars. Nevertheless, the identification and characterization of micro and meso physical phenomena is necessary for a more thorough analysis. This work presents an experimental methodology that combines the squeeze flow test with a pressure mapping system for the rheological evaluation of cement-based mortars. Two compositions were analyzed, with and without viscosity modifying cellulose ether based admixture, and the liquid phase migration was quantified to support the interpretation of the results. The developed pressure mapped squeeze flow (PMSF) method allowed for reliable measurement of the evolution of the pressure distribution on the whole area of the squeezed sample, and the results were compared with theoretical models for different flow types and rheological behaviors. The presence of the cellulose ether admixture resulted in more homogeneous flows, which enabled bigger displacements and generated less fluctuations in the pressure distributions.
机译:挤压流测试提供有关迫击炮的宏观流变行为的相关信息。然而,对于更彻底的分析,需要微观和中间物理现象的鉴定和表征。这项工作提出了一种实验方法,将挤压流试验与压力测绘系统相结合,以便流变基于水泥基迫击炮的流变评估。分析了两种组合物,用粘度改性纤维素醚的混合物,量化液相迁移以支持结果的解释。施加的压力映射挤出流动(PMSF)方法允许可靠地测量挤压样品的整个区域的压力分布的演变,并将结果与​​不同流动类型和流变行为的理论模型进行比较。纤维素醚混合物的存在导致更均匀的流动,这使得能够更大的位移并在压力分布中产生更少的波动。

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