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Comparisons of natural and recycled aggregate concretes prepared with the addition of different mineral admixtures

机译:掺加不同矿物掺合料的天然和再生骨料混凝土的比较

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This paper presents the results of a laboratory study on the performance of natural and recycled aggregate concrete prepared with the incorporation of different mineral admixtures including silica fumes (SF), metakaolin (MK), fly ash (FA) and Ground granulated blast slag (GGBS). The compressive and splitting tensile strength, drying shrinkage, chloride ion penetration and ultrasonic pulse velocity (UPV) of the concrete mixtures were determined. The test results, in general, showed that the incorporation of mineral admixtures improved the properties of the recycled aggregate concretes. SF and MK contributed to both the short and long-term properties of the concrete, whereas FA and GGBS showed their beneficial effect only after a relatively long curing time. As far as the compressive strength is concerned, the replacement of cement by 10% of SF or 15% of MK improved both mechanical and durability performance, while the replacement of cement by 35% FA or 55% GGBS decreased the compressive strength, but improved the durability properties of the recycled aggregate concretes. Moreover, the results show that the contributions of the mineral admixtures to performance improvement of the recycled aggregate concrete are higher than that to the natural aggregate concrete.
机译:本文介绍了通过掺入不同矿物掺合料(包括硅粉(SF),偏高岭土(MK),粉煤灰(FA)和粉状高炉矿渣(GGBS))制备的天然和再生骨料混凝土的性能的实验室研究结果。 )。测定了混凝土混合物的压缩和劈裂抗张强度,干燥收缩,氯离子渗透和超声脉冲速度(UPV)。通常,测试结果表明,掺入矿物掺合料可改善再生骨料混凝土的性能。 SF和MK有助于混凝土的短期和长期性能,而FA和GGBS仅在相对较长的固化时间后才显示出有益的作用。就抗压强度而言,用10%的SF或15%的MK代替水泥可改善机械性能和耐久性能,而用35%的FA或55%GGBS代替水泥可降低抗压强度,但改善了再生骨料混凝土的耐久性能。此外,结果表明,矿物掺合料对再生骨料混凝土性能改善的贡献高于对天然骨料混凝土的贡献。

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