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Effect of Curing Temperature on Hardened Concrete Properties Mixtures of Ground Granulated Blast Furnace Slag, Fly Ash, or a Combination of Both

机译:养护温度对高炉矿渣,粉煤灰或二者结合的硬化混凝土性能混合物的影响

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摘要

Often, concrete is not mixed or placed under ideal conditions. Particularly in the winter or the summer months, the temperature of fresh concrete is quite different from that of concrete mixed under laboratory conditions. This paper examines the influence of supplementary cementitious materials on the strength development (and other hardened properties) of concrete subjected to different curing regimens. The supplementary cementitious materials used in the research program were ground granulated blast furnace slag (GGBFS), fly ash, and a combination of both materials. The three curing regimens used were hot weather curing, standard curing, and cold weather curing. Under the conditions tested, the results show that the addition of GGBFS at a relatively low replacement rate can improve the hardened properties for each curing regimen. This improvement was noticeable not only at later ages but also at early ages. Mixtures that contained both materials (GGBFS and fly ash) performed as well as and, in most cases, better than mixtures that contained only portland cement in all curing regimens.
机译:通常,混凝土不会在理想条件下混合或放置。特别是在冬季或夏季,新鲜混凝土的温度与实验室条件下混合混凝土的温度有很大不同。本文研究了辅助胶凝材料对采用不同养护方式的混凝土强度发展(以及其他硬化性能)的影响。研究计划中使用的补充胶凝材料是粉碎的高炉矿渣(GGBFS),粉煤灰,以及两种材料的组合。所使用的三种固化方案是热天气固化,标准固化和冷气候固化。在测试条件下,结果表明,以相对较低的替代率添加GGBFS可以改善每种固化方案的硬化性能。这种改善不仅在较晚的年龄而且在较早的年龄也很明显。包含两种材料(GGBFS和粉煤灰)的混合物的性能以及在大多数情况下要好于在所有固化方案中仅包含硅酸盐水泥的混合物。

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