矿渣水泥防止碱-硅反应的有效性:十年研究结果

D. Higgins, G. McLellan
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引用次数: 2

摘要

为了研究混凝土的碱含量与碱-硅反应引起的膨胀之间的关系,本文在十年的时间里定期测量了数百个含有活性天然骨料的混凝土棱镜。这些棱柱含有0 - 70%的矿渣水泥和硅酸盐水泥,混凝土碱含量在4.5 - 11 kg/m3 (0.3 - 0.7 lb/ft3)之间。硅酸盐水泥的碱含量为0.54 ~ 1.15%,矿渣水泥的碱含量为0.58 ~ 0.83%。棱镜在20°C(68°F)和38°C(100°F)下潮湿保存。在较高温度下的储存加速了膨胀速率,并略微增加了极限膨胀。在将混合物分类为“膨胀”或“非膨胀”方面,这两个温度之间的相关性非常好。结论是,在38°C(100°F)下储存是一种加速试验,可用于可靠地预测在“正常”温度下会发生什么。含有矿渣水泥的混合物,在混凝土中耐碱含量高得多,不膨胀。矿渣水泥掺量越大,效果越明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effectiveness of Slag Cement in Preventing Alkali-Silica Reaction: Ten-Year Results
This paper will discuss that in order to investigate the relationship between the alkali content of concrete and the expansion caused by alkali-silica reaction, several hundred concrete prisms containing reactive natural aggregate were regularly measured over a period of ten years. These prisms contained between 0 and 70% slag cement in combination with portland cements, and had concrete alkali contents between 4.5 and 11 kg/m3 (0.3 and 0.7 lb/ft3). The alkali content of the Portland cements ranged from 0.54 to 1.15% and that of the slag cements from 0.58 to 0.83%. Prisms were moist-stored at 20°C (68 °F) and at 38°C (100°F). Storage at the higher temperature accelerated the rate of expansion, and slightly increased the ultimate expansion. The correlation between the two temperatures was very good in terms of classifying mixtures as either ‘expanding’ or ‘non-expanding’. It is concluded that storage at 38°C (100°F) is an accelerated test that can be used to reliably predict what would happen at ‘normal’ temperature. The mixtures containing slag cement, tolerated much greater alkali contents in the concrete, without expansion. This effect was more pronounced for higher proportions of slag cement.
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