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The influence of carbonation process on concrete bridges and durability in Estonian practice

机译:碳化过程对爱沙尼亚实践混凝土桥梁及耐久性的影响

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Concrete as one of the most widely used construction material in building industry, has considerable implementing in bridge engineering due to its extensive number of effective technical characteristics. However, according to exploitation environment, there are substantial factors such as aggressive liquids (e.g. deiced salts, sulfates, etc), rapid temperature alterations and the increasing rate of CO2 to take into account predicting actual retained service life of concrete structure and the need of repairmen to increase the lifespan of the bridge. According to several measuring, concentration of atmospheric CO2 is reported linearly increasing and is modeled to appear as exponential increase in the next decade. This environmental influence leads to accelerated carbonation process of concrete and brings up the importance of its potential untimely degradation mechanism. Hence, the main aim of this research is to give an analyzed overview of the carbonation depths of selection of 11 concrete bridges in Estonia built in the period of 1976-2007 and their relation with compressive strength of concrete. In addition to in situ tests, laboratory research was performed to understand natural carbonation rate and compressive strength relations of concrete.
机译:混凝土作为建筑业最广泛的建筑材料之一,由于其广泛的有效技术特征,在桥梁工程中具有相当大的实施。然而,根据剥削环境,存在大量因素,例如积极的液体(例如切屑,硫酸盐,硫酸盐等),快速改变和CO2的增加率,以考虑到具体的混凝土结构的实际保留使用寿命以及需求修理仪增加桥梁的寿命。根据几种测量,报告浓度的大气CO2线性增加,并在未来十年中被建模以显示为指数增加。这种环境影响导致混凝土的加速碳酸化过程,并提出了其潜在不合时宜的降解机制的重要性。因此,本研究的主要目的是让爱沙尼亚11座混凝土桥梁的选择碳化深度的分析概述建于1976-2007期间及其与混凝土抗压强度关系。除了原位测试外,还进行了实验室研究以了解混凝土的天然碳化率和抗压强度关系。

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