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The influence of the mineral additives on the carbonation of cement composites

机译:矿物添加剂对水泥复合材料碳化的影响

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In practice, it is usually assumed that the durability of basic structural elements should not be less than the expected durability of the building. Reinforced concrete constructions, designed and made with quality requirements, are durable. However, each reinforced concrete structure, from the moment it is made, is gradually degraded, and one of the reasons for its destruction is often the corrosion of the concrete and hence the reinforcement. For the long-term use of reinforced concrete constructions, the most important thing is that a thin protective layer on the steel surface protects the reinforcing steel from rusting. One of the most common causes of corrosion in the reinforcement is the damage of this layer as a result of the carbonation of the concrete cover. The rate of carbonation depends on many factors, such as concrete compactness, concentration of CO_(2), concrete moisture, content of free calcium dioxide, content of mineral additives, etc. When the carbonated layer reaches the steel reinforcement layer, protection of steel from corrosion ceases to exist. The aim of the presented research was to determine the influence of mineral additives used as a compound of concrete on the carbonation of concrete and polymer-cement composites.
机译:在实践中,通常假定基本结构元件的耐久性不应低于建筑物的预期耐久性。按照质量要求设计和制造的钢筋混凝土结构坚固耐用。但是,每个钢筋混凝土结构从制造之初就逐渐退化,其破坏的原因之一通常是混凝土的腐蚀以及钢筋的腐蚀。对于钢筋混凝土结构的长期使用,最重要的是钢表面上的薄保护层可以防止钢筋生锈。钢筋中最常见的腐蚀原因之一是由于混凝土表层碳化导致的该层损坏。碳化的速度取决于许多因素,例如混凝土的致密性,CO_(2)的浓度,混凝土的水分,游离二氧化钙的含量,矿物添加剂的含量等。当碳化层到达钢筋层时,对钢的保护腐蚀不再存在。本研究的目的是确定用作混凝土混合物的矿物添加剂对混凝土和聚合物-水泥复合材料碳化的影响。

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