The Influence of Aggressive Environmental Conditions on the Adhesion of Applied Crystalline Materials

IF 3 Q2 MATERIALS SCIENCE, COMPOSITES
Martin Mottl, P. Reiterman, J. Pazderka
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Abstract

Crystalline coatings are waterproofing systems used for additional protection against increased moisture and subsurface water ingress. Even though these crystalline materials are commonly used in moisture-protective systems, they have not yet been sufficiently scientifically described. The weakest link in the chain of interaction between crystalline coatings and underlying concrete is the transition zone. To increase knowledge of the interaction between these materials, a series of experiments was prepared using a specially formulated protective mortar as the final surface layer, with the function of additionally waterproofing the structure. An experimental study of the adhesion of surface layers based on secondary crystallization to provide additional protection to concrete structures loaded with moisture or ground water exposure is presented in this paper. The series of experiments carried out consisted of an analysis of protective crystalline mortar adhesion to concrete samples of identical composition. A set of experimental measurements under the influence of various boundary conditions was carried out to determine the bond strength between two different materials. For the experimental measurements, the materials were exposed to aggressive environments for which durability verification had not yet been performed. A modified protective mortar with crystalline admixture was used as an overlayed material. This mortar worked similarly to a crystalline coating after application. Over time, there was penetration of the underlaying concrete and a secondary hydration of the cement matrix which resulted in the waterproofing of the structure. The test samples were exposed to aggressive environmental conditions in the form of freezing–thawing cycles and a carbonation process. Pull-off tests were carried out on every test sample to determine the strength of the surface layers. The penetration of the crystalline agent into the base concrete was confirmed with an SEM observation. The results of the experimental program showed that exposure to the aggressive environment further reduced the strength of the modified mortar containing the crystalline admixture. However, the bond strength between the concrete and the modified mortar exceeded the tensile strength of the concrete.
侵蚀性环境条件对应用晶体材料附着力的影响
结晶涂层是一种防水系统,用于提供额外保护,防止湿度增加和地下水渗入。尽管这些结晶材料通常用于防潮系统中,但对它们的描述还不够科学。在结晶涂层与下层混凝土的相互作用链中,最薄弱的环节是过渡区。为了增加对这些材料之间相互作用的了解,我们准备了一系列实验,使用专门配制的保护砂浆作为最后的表层,其功能是对结构进行额外的防水处理。本文介绍了基于二次结晶的表层附着力实验研究,该实验旨在为受潮或接触地下水的混凝土结构提供额外保护。所进行的一系列实验包括分析保护性结晶砂浆与相同成分的混凝土样品之间的附着力。在各种边界条件的影响下进行了一系列实验测量,以确定两种不同材料之间的粘结强度。在实验测量中,材料暴露在侵蚀性环境中,尚未进行耐久性验证。使用含结晶外加剂的改性保护砂浆作为覆盖材料。这种砂浆在使用后的效果与结晶涂层类似。随着时间的推移,底层混凝土发生渗透,水泥基质发生二次水化,从而实现了结构防水。测试样品暴露在冻融循环和碳化过程等恶劣环境条件下。对每个测试样本都进行了拉拔测试,以确定表层的强度。通过扫描电镜观察,确认了结晶剂对基础混凝土的渗透。实验结果表明,暴露在侵蚀性环境中会进一步降低含有结晶外加剂的改性砂浆的强度。不过,混凝土与改性砂浆之间的粘结强度超过了混凝土的抗拉强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Composites Science
Journal of Composites Science MATERIALS SCIENCE, COMPOSITES-
CiteScore
5.00
自引率
9.10%
发文量
328
审稿时长
11 weeks
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