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The importance of physical parameters for the penetration depth of impregnation products into cementitious materials: Modelling and experimental study

机译:物理参数对浸渍产品渗透深度的重要性,进入水泥材料:建模与实验研究

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The performance of impregnation treatments used for protection and remediation of porous building materials relies on sufficient penetration depth. The penetration of sol-gel impregnation products into partially saturated porous material is driven by capillary suction and depends on material properties, such as pore size distribution on one hand, and on the other hand on sol physical properties, viscosity, density, surface tension and contact angle, along with the time in which the sol gels. In this work we analyse, by the way of modelling and experiments, the penetration depth of a sol-gel impregnation product as the function of pore size distribution and sol properties. The main goal is to determine the importance of sol's physical properties for the penetration depth for a specific pore size, which will serve as a basis of the optimization of impregnation products to maximize their penetration depth. The model is first calibrated in terms of penetration depth and sol uptake by the experimental data obtained from mortar samples each with a specific pore-size distribution. The correlation between penetration depth and physical parameters is then established by the use of Monte-Carlo method. The results show that the most important parameters for the optimization are surface tension, whose influence increases for larger pores, and gelation time, which with decreasing importance for larger pores. (C) 2020 The Author(s). Published by Elsevier Ltd.
机译:用于保护和修复多孔建筑材料的浸渍处理的性能依赖于足够的渗透深度。溶胶 - 凝胶浸渍产物渗透到部分饱和的多孔材料中由毛细管抽吸驱动,并取决于材料性质,例如一方面的孔径分布,另一方面,溶胶物理性质,粘度,密度,表面张力和接触角,以及溶胶凝胶的时间。在这项工作中,我们通过建模和实验方式分析,溶胶 - 凝胶浸渍产品的渗透深度作为孔径分布和溶胶性能的函数。主要目标是确定溶胶物理性质对特定孔径的渗透深度的重要性,这将作为浸渍产品优化以最大化其渗透深度的基础。首先在渗透深度和通过从砂浆样品获得的实验数据进行溶解的型号校准,每个孔隙尺寸分布。然后通过使用Monte-Carlo方法建立穿透深度和物理参数之间的相关性。结果表明,优化的最重要参数是表面张力,其影响较大的孔隙和凝胶化时间,这随着对较大孔的重要性而降低。 (c)2020提交人。 elsevier有限公司出版

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