高炉细矿渣在改善混凝土性能中的应用

H. Al-Baijat, Mohmd Sarireh
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引用次数: 6

摘要

高炉细矿渣可以改善混凝土的性能。后者以10%、15%、20%、25%和30%的比例替代混凝土中的水泥,新混凝土和硬化混凝土的性能都得到了改善。最佳工作性(通过坍落度和表试验来评价)记录在BFS添加量的30%。混凝土和易性指标vebe时间在BFS为30%时降至最低值(约4秒),压实系数在BFS为25%时达到最大值99%。对于密度和单位重量,30%的细BFS在混凝土混合料中导致新混凝土的最大密度为2180 kg/m3,硬化混凝土的最大密度为2430 kg/m3。30% BFS下,混凝土单位重量最大达到23.9 kN/m3,在第1周和28天达到规定强度,后期强度在56天和84天达到较高。粘结和弯曲载荷是BFS使用的高负荷。抗压、粘结和抗弯强度的数据是高度相关的。研究结果对利用细BFS改善混凝土材料性能具有一定的指导意义。
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The Use of Fine Blast Furnace Slag in Improvement of Properties of Concrete
Concrete properties can be improved using Fine Blast Furnace Slag (BFS). The latter was used to replace cement in concrete at 10%, 15%, 20%, 25%, and 30% proportions and properties of both fresh and hardened concrete improved. Best workability (evaluated by slump and Table tests) was recorded at 30% of BFS addition. VEBE-time, an indication of workability of concrete, decreased to its lowest value (about 4 seconds at 30% BFS) and compaction factor attained its maximum value of 99% at BFS 25%. For density and unit weight, 30% of fine BFS in concrete mix resulted in maximum density of 2180 kg/m3 for fresh concrete, and 2430 kg/m3 for hardened concrete. Unit weight of concrete achieved a maximum of 23.9 kN/m3 at 30% BFS has achieved specified strength at 1st week and 28 days, also the late strength is high at 56 and 84 days. Bond and flexure loads come high of BFS use. The data of compressive, bond, and flexural strengths are highly related. Results of research are useful and may be applied using fine BFS to improve the properties of concrete materials.
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