RC柱暴露于氯化物攻击的使用寿命变化:一个时间依赖的确定性和概率检查

Q4 Engineering
Seung-Jun Kwon
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引用次数: 1

摘要

摘要钢筋混凝土(RC)寿命预测通常采用确定性或概率方法来预测氯侵蚀现象。长期暴露的现场调查结果可以为评估使用寿命提供合理的数据,但即使在相同的混合比例和暴露条件下,腐蚀的进展也会因当地条件而不同。本文采用确定性和概率两种方法探讨了受氯化物侵蚀3.5 ~ 4.5年的钢筋混凝土柱的使用寿命变化规律。对暴露于潮汐和大气带的4个RC柱进行了实地调查,获得了25个岩心的各种氯化物剖面。分析了氯离子扩散系数和表面氯离子含量与岩心采掘高度和相应暴露条件的关系。随着时间的推移,表面氯化物含量增加,扩散系数减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Service life variation in RC columns exposed to chloride attack: a time-dependent deterministic and probabilistic examination
AbstractService life prediction for reinforced concrete (RC) is usually performed through deterministic or probabilistic methods in regard to anticipating the phenomenon of chloride attack. The field investigation results from long-term exposure can provide reasonable data for evaluating service life, but corrosion can progress differently due to local conditions, even with the same mix proportions and exposure conditions. This paper uses two methods (deterministic and probabilistic) to explore the variation of the service life of RC columns which have been exposed to chloride attack for 3.5–4.5 years. Fieldwork was carried out on four RC columns exposed to tidal and atmospheric zones, and various chloride profiles from 25 cores were obtained. The chloride diffusion coefficients and surface chloride contents were analysed in relation to the heights at which the cores were taken and the corresponding exposure conditions. Increasing surface chloride content and decreasing diffusion coefficient with time are...
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
0
期刊介绍: The International Journal of Sustainable Building Technology and Urban Development is the official publication of the Sustainable Building Research Center and serves as a resource to professionals and academics within the architecture and sustainability community. The International Journal of Sustainable Building Technology and Urban Development aims to support its academic community by disseminating studies on sustainable building technology, focusing on issues related to sustainable approaches in the construction industry to reduce waste and mass consumption, integration of advanced architectural technologies and environmentalism, sustainable building maintenance, life cycle cost (LCC), social issues, education and public policies relating to urban development and architecture .
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