Influence of capillary absorption and roughness of ceramic substrates on the adhesion of cement pastes

C. W. Menegotto, M. Lunardi, Daiana Cristina Metz Arnold, Leandro Tonietto, Valéria Costa de Oliveira, M. P. Kulakowski, C. S. Kazmierczak
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Abstract

Abstrac This study assesses the joint influence of capillary absorption and substrate roughness on the adhesive strength of a cementitious matrix on brick substrate. One cementitious rendering and two substrates with different water absorption and roughness were used. The capillary absorption coefficient and the roughness coefficient were determined in 1cm2 test areas to then evaluate the matrix tensile bond strength and correlate it with the properties of the substrates. The results were validated by SEM and AFM analyses. Substrates with higher capillary absorption and lower roughness presented higher tensile bond strength. Micro and nanoscale analyses led us to conclude that, in the substrates used, the higher capillary absorption and the lower roughness generate a denser and less porous paste-substrate interface, suggesting a higher extent of contact between the hydrated paste and the substrate and, consequently, higher adhesive strength.
陶瓷基底的毛细吸收和粗糙度对水泥浆粘附性的影响
Abstrac 本研究评估了毛细管吸水率和基材粗糙度对水泥基质在砖基材上的粘接强度的共同影响。使用了一种水泥基效果图和两种具有不同吸水性和粗糙度的基材。在 1 平方厘米的测试区域内测定毛细管吸水系数和粗糙度系数,然后评估基质拉伸粘接强度,并将其与基质的特性联系起来。扫描电镜和原子力显微镜分析对结果进行了验证。毛细管吸收率较高和粗糙度较低的基底具有较高的拉伸粘接强度。通过微观和纳米尺度分析,我们得出结论:在所使用的基底中,较高的毛细管吸收率和较低的粗糙度会使浆料-基底界面更致密、孔隙更少,这表明水合浆料与基底之间的接触程度更高,因此粘接强度也更高。
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