On the performance-based approaches to evaluate the oxidation potential of iron sulfide-bearing aggregates in concrete

Zhanzhao Li , Gopakumar Kaladharan , Anthony Bentivegna , Aleksandra Radlińska
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引用次数: 1

Abstract

Oxidation of aggregates containing iron sulfide minerals has recently been linked to severe degradation in housing foundations in the northeast United States and the Trois-Rivières area of Quebec, Canada. Existing performance-based approaches mainly rely on the use of oxidizing solutions, which may create harsh environments and lead to unexpected results. This work evaluated the effectiveness of a mortar test by using atmospheric oxygen (a more realistic exposure condition) as an oxidizing agent and employed a design of experiments approach to investigate the effects of relative humidity (50% and 95%), oxygen content (20.9% and 35%), temperature (5°C and 60°C), and water-to-cement ratio (0.45 and 0.65) on the oxidation potential of iron sulfide-bearing aggregates. Results show that length changes of the mortar samples are mainly attributed to drying shrinkage within the experimental duration (more than 400 days), which is highly dependent on the relative humidity levels, whereas minimal to no expansion was observed under laboratory conditions. Recent efforts to simulate iron sulfide deterioration in laboratories by performance-based tests are then reviewed. Their advances and challenges as well as comparison with the proposed test are summarized, leading to a call for further development of experimental methods.

基于性能的方法评估含硫化铁骨料在混凝土中的氧化潜力
最近,在美国东北部和加拿大魁北克省的Trois Rivières地区,含有硫化铁矿物的骨料的氧化与房屋地基的严重退化有关。现有的基于性能的方法主要依赖于氧化溶液的使用,这可能会造成恶劣的环境并导致意想不到的结果。这项工作通过使用大气氧气(更现实的暴露条件)作为氧化剂来评估砂浆试验的有效性,并采用实验设计方法来研究相对湿度(50%和95%)、含氧量(20.9%和35%)、温度(5°C和60°C),水灰比(0.45和0.65)对含硫化铁集料氧化电位的影响。结果表明,砂浆样品的长度变化主要归因于实验持续时间(超过400天)内的干燥收缩,这在很大程度上取决于相对湿度水平,而在实验室条件下观察到的膨胀最小甚至没有。然后回顾了最近在实验室中通过基于性能的测试模拟硫化铁劣化的努力。总结了它们的进展和挑战,以及与拟议测试的比较,从而呼吁进一步发展实验方法。
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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