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Developing a More Rapid Test to Assess Sulfate Resistance of Hydraulic Cements

机译:开发更快的测试来评估水硬性水泥的耐硫酸盐性

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摘要

External sulfate attack of concrete is a major problem that can appear in regions where concrete is exposed to soil or water containing sulfates, leading to softening and cracking of the concrete. Therefore, it is important that materials selection and proportioning of concrete in susceptible regions be carefully considered to resist sulfate attack. American Society for Testing Materials (ASTM) limits the tricalcium aluminate phase in cements when sulfate exposure is of concern. The hydration products of tricalcium aluminate react with the sulfates resulting in expansion and cracking. While ASTM standard tests are available to determine the susceptibility of cements to sulfate attack, these tests require at least 6 months and often up to a year to perform; a delay that hinders development of new cements. This paper presents a new method for testing cement resistance to sulfate attack that is three to five times faster than the current ASTM tests. Development of the procedure was based upon insights on the degradation process by petrographic examination of sulfate-exposed specimens over time. Also key to the development was the use of smaller samples and tighter environmental control.
机译:混凝土的外部硫酸盐侵蚀是一个主要问题,可能会在混凝土暴露于含有硫酸盐的土壤或水的区域中出现,从而导致混凝土软化和开裂。因此,重要的是要仔细考虑易受影响区域中混凝土的材料选择和配比,以抵抗硫酸盐的侵蚀。当关注硫酸盐暴露时,美国材料试验学会(ASTM)限制了水泥中的铝酸三钙相。铝酸三钙的水合产物与硫酸盐反应,导致膨胀和裂化。虽然可以使用ASTM标准测试来确定水泥对硫酸盐侵蚀的敏感性,但这些测试至少需要6个月,通常需要长达一年的时间才能进行;延迟阻碍了新水泥的开发。本文提出了一种测试水泥抗硫酸盐侵蚀的新方法,该方法比当前的ASTM测试快三到五倍。该方法的开发是基于对硫酸盐暴露的标本随时间的岩石学检查对降解过程的见解。开发的另一个关键是使用较小的样品和更严格的环境控制。

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