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Effects of retempering on consistency and compressive strength of concrete subjected to prolonged mixing

机译:回火对长时间搅拌混凝土的稠度和抗压强度的影响

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摘要

In this study, effects of prolonged mixing and four different retempering processes on some properties of fresh and hardened concrete, such as temperature, slump loss, and strength, were investigated. Tow types of concrete mixtures with different compression strength having 15 cm initial slump were produced in a laboratory mixer. After mixing for 5 min at 20 rpm speed to ensure homogeneity, the mixing was continued at 4 rpm for a period of up to 4 h to simulate the prolonged agitation of ready-mixed concrete in truck mixers. Concrete samples were taken out of the mixer at the end of first, second, third, and fourth hour for estimating the effects of prolonged mixing on properties of fresh concrete. For restoring the initial workability, four different retempering methods were used and their effects on properties of concrete were investigated. Results show that compared to the untempered concrete mixtures, those tempered with solutions prepared by 3 percent or 4.5 percent solid superplasticizer by mass of retempering water had significantly less loss of 28-day compressive strength.
机译:在这项研究中,研究了长时间混合和四种不同的回火工艺对新鲜和硬化混凝土的某些性能(例如温度,坍落度损失和强度)的影响。在实验室搅拌机中生产两种类型的具有不同抗压强度,初始坍落度为15 cm的混凝土混合物。在以20 rpm的速度搅拌5分钟以确保均匀后,以4 rpm的速度继续搅拌长达4小时,以模拟卡车搅拌机中预拌混凝土的长时间搅拌。在第一,第二,第三和第四小时结束时,从搅拌机中取出混凝土样品,以评估长时间搅拌对新鲜混凝土性能的影响。为了恢复初始可加工性,使用了四种不同的回火方法,并研究了它们对混凝土性能的影响。结果表明,与未回火的混凝土混合物相比,用3%或4.5%固体高效减水剂按回火水质量配制的溶液回火的混凝土,其28天抗压强度的损失要小得多。

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