Protective Аbility of Cement Concrete with Polyfunctional Additive in Relation to Steel Reinforcement

N. S. Gurinenko, E. I. Batyanovskiy
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Abstract

The paper presents the results of studies of the influence of the components of a complex polyfunctional additive on the protective ability of concrete in relation to steel reinforcement of reinforced concrete building structures. In accordance with modern trends in the use of chemical additives in concrete with the aim of a complex effect both on the processes of hardening and the formation of its structure, and on the final physical, mechanical and operational properties of concrete, the additive in question consists of a number of components. It consists of a plasticizing component, accelerating hardening and compacting the structure of hardening concrete, as well as amorphous ultrafine microsilica. The presence of the latter is accompanied by a reaction with calcium hydroxide and its transfer to a bound state in hardening concrete, which creates prerequisites for a decrease in alkalinity (pH factor) in its volume and, accordingly, can create a risk of corrosion of steel reinforcement of reinforced concrete structures. Taking into account this circumstance, studies have been carried out in order to establish the degree of influence of the amorphous ultrafine microsilica present in the composition of the additive on the properties of concrete, including an assessment of its protective properties in relation to steel reinforcement, as well as a change in strength over time (in this paper up to the "age" of concrete in three years from the moment of manufacture of samples of compositions without chemical additives and with the introduction of a complex polyfunctional additive). As a result, an increase in the density, strength of concrete and its operational properties, including the protective ability in relation to steel reinforcement, due to the complex effect of the additive components, has been revealed, including a decrease in the initial water content and an increase in the density of the cement stone and transition zones of its contact with the surface of the aggregate grains in concrete.
与钢筋有关的多功能添加剂对水泥混凝土的保护Аbility
本文介绍了一种复合多功能添加剂的组成对钢筋混凝土建筑结构中钢筋混凝土防护能力影响的研究结果。根据在混凝土中使用化学添加剂的现代趋势,其目的是对混凝土的硬化过程和结构形成以及混凝土的最终物理、机械和操作性能产生复杂的影响,所讨论的添加剂由许多组分组成。它由增塑剂组成,加速硬化和压实硬化混凝土的结构,以及无定形超细微二氧化硅。后者的存在伴随着与氢氧化钙的反应,并将其转移到硬化混凝土中的结合状态,这为其体积中的碱度(pH因子)降低创造了先决条件,因此,可能造成钢筋混凝土结构的钢筋腐蚀的风险。考虑到这种情况,已经进行了研究,以确定添加剂组成中存在的无定形超细微二氧化硅对混凝土性能的影响程度,包括评估其与钢筋有关的保护性能。以及强度随时间的变化(在本文中,混凝土的“龄期”为三年,从制造无化学添加剂的组合物样品开始,并引入复杂的多功能添加剂)。结果,由于添加剂成分的复杂作用,混凝土的密度、强度及其操作性能(包括与钢筋相关的保护能力)的增加已经被揭示出来,包括初始含水量的降低和水泥石及其与混凝土骨料颗粒表面接触的过渡区密度的增加。
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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