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Influence of Frost Damage on Chloride Penetration into Concrete

机译:霜损伤对混凝土氯化物渗透的影响

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In most national and international codes for durability design, service life is estimated after selection of one single and dominant deteriorating process such as carbonation, chloride penetration or frost attack. Application of existing codes has shown, however, that the predicted service life is not reached in practice in most cases. Early damage occurs and as a consequence expensive repair measures become frequently necessary, long before the design service life is reached. One reason for this discrepancy is certainly the fact that in practice each dominant deteriorating process is usually accompanied by other aggravating processes. In this contribution capillary absorption of different types of concrete is studied first. The influence of an increasing number of freeze-thaw cycles on capillary absorption of water is studied first, then chloride penetration before and after exposure to a certain number of freeze-thaw cycles was determined experimentally. It was found that an increasing number of freeze-thaw cycles increases chloride penetration significantly, and hence reduces service life in aggressive environment. It can be concluded that for realistic service life prediction the interaction between frost damage and chloride penetration has to be taken into consideration in regions with low temperatures.
机译:在耐久性设计大多数国家和国际规范,使用寿命是一个单一的和占主导地位的恶化过程中的选择,例如碳化,氯离子渗透或霜冻袭击后估计。现有代码的应用已经显示出,但是,预计使用寿命在实践中没有在大多数情况下达成。出现早期损坏并因此昂贵的维修措施成为必要频繁,达到设计使用寿命长才。这种差异的一个原因当然是一个事实,即在实践中每一个占主导地位的恶化过程通常伴有其他加重处理。在不同类型的混凝土的这一贡献毛细血管吸收首先研究。越来越多的水吸收毛细管冻融循环的的影响被前和暴露于一定数目的冷冻 - 解冻循环的实验测定后首次研究,然后氯离子渗透。已经发现,越来越多的冷冻 - 解冻循环的显著增加氯离子渗透,并因此减少在侵蚀性环境的使用寿命。由此可以得出结论,对于现实的使用寿命预测冻害和氯离子渗透之间的相互作用已经能与低温下考虑到的区域。

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