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Microstructural Changes Due to Alkali-Silica Reaction during Standard Mortar Test

机译:在标准砂浆试验中由于碱-硅石反应引起的微观结构变化

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摘要

The microstructural development of mortar bars with silica glass aggregate undergoing alkali-silica reaction (ASR) under the conditions of American Society for Testing and Materials (ASTM) Standard Test C1260 was analyzed using scanning electron microscopy and qualitative X-ray microanalysis. Cracking in the aggregate, the hydrated paste, and the paste-aggregate interface was important in the development of the microstructure. Cracks were characterized according to their location, their relationship to other cracks, and whether they are filled with ASR gel. Expansion of the bars was approximately 1% at 12 days and 2% at 53 days. They fell apart by 63 days. The bars contained two zones, an inner region that was undergoing ASR and an outer and much more highly damaged zone that extended further inward over time. Evidence of ASR was present even during the period when specimens were immersed in water, prior to immersion in NaOH solution.
机译:使用扫描电子显微镜和定性X射线显微分析技术,分析了在美国测试和材料协会(ASTM)标准测试C1260的条件下,经过碱-二氧化硅反应(ASR)的石英玻璃骨料的砂浆棒的微观结构发展。骨料,水合糊料和糊料-骨料界面的裂纹在微观结构的发展中很重要。根据裂纹的位置,与其他裂纹的关系以及是否填充了ASR凝胶来表征裂纹。棒的膨胀在12天时约为1%,在53天时约为2%。他们分崩离析了63天。这些条包含两个区域,一个是内部区域,该区域正在经受ASR;另一个是外部区域,其损坏程度更高,并且随着时间的推移进一步向内延伸。即使在将样品浸入NaOH溶液之前将其浸入水中的期间,也存在ASR的证据。

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