Adamus Janina, Langier Bogdan
Department of Civil Engineering, Faculty of Civil Engineering, Czestochowa University of Technology, 69 Dabrowskiego St., 42-201 Czestochowa, Poland.
Materials (Basel). 2023 Aug 22;16(17):5742. doi: 10.3390/ma16175742.
The growing demand for watertight concrete structures is conducive to the development of research in this area, but their results are rarely published. In order to partially fill this gap, the authors of the publication present the results of research into the effect of fly ash addition on the watertightness of concrete. Prior to the tests, a recipe for a concrete mix with the addition of a sealing admixture modified with fly ash was developed. The following properties were analyzed: consistency of the concrete mix, air content in the concrete mix, compressive strength of concrete, depth of penetration of water under pressure, and frost resistance of concrete for F150 level. The work meets the expectations of the construction industry with respect to the production of concrete structures resistant not only to the penetration of water into concrete but also resistant to aggressive substances dissolved in water that accelerate the destruction of concrete and corrosion of reinforcement bars. Based on the test results, it was found that the addition of fly ash to the concrete mix enhances the positive impact of the applied sealing admixture, increasing the tightness of the concrete. It reduces the depth of penetration of water under pressure and therefore increases the frost resistance of concrete.
对防水混凝土结构日益增长的需求有利于该领域研究的发展,但其研究成果很少发表。为了部分填补这一空白,该出版物的作者展示了关于添加粉煤灰对混凝土防水性影响的研究结果。在试验之前,制定了一种添加了用粉煤灰改性的密封外加剂的混凝土混合料配方。分析了以下性能:混凝土混合料的稠度、混凝土混合料中的含气量、混凝土的抗压强度、压力下水的渗透深度以及F150等级混凝土的抗冻性。这项工作符合建筑行业对生产不仅能抵抗水渗入混凝土,而且能抵抗溶解在水中加速混凝土破坏和钢筋腐蚀的侵蚀性物质的混凝土结构的期望。基于试验结果,发现向混凝土混合料中添加粉煤灰增强了所应用的密封外加剂的积极影响,提高了混凝土的密实性。它减小了压力下水的渗透深度,因此提高了混凝土的抗冻性。