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首页> 外文期刊>Advances in materials science and engineering >Experimental Study on the Concrete with Compound Admixture of Iron Tailings and Slag Powder under Low Cement Clinker System
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Experimental Study on the Concrete with Compound Admixture of Iron Tailings and Slag Powder under Low Cement Clinker System

机译:低水泥熟料体系下铁尾矿与矿渣粉复合掺合料的试验研究。

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In order to study the performance of concrete with compound admixture of iron tailings and slag powder under low cement clinker system, the mixture ratio of different iron tailings powder and slag powder was designed to prepare C30 and C50 concrete. The workability, strength, carbonation depth, chloride diffusion coefficient, scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), and X-ray diffraction (XRD) of concrete were measured, respectively. The test results show that iron tailings powder is beneficial to improve the workability, and the strength of concrete decreases with the increase of iron tailings powder content, while the carbonation depth and chloride diffusion coefficient increase with the increase of iron tailings powder content. Under low cement clinker system, the iron tailings powder should not be used alone (below 70% of mineral admixture). When the ratio of iron tailings to slag powder is 1  1, the strength, carbonation depth, chloride ion permeation coefficient, and the microstructure of concrete are roughly the same to that of concrete with single slag powder. So, the iron tailings powder can replace S95 grade slag powder in the same quantity. Iron tailings powder does not take part in hydration reaction, but it can improve particle gradation, reach close accumulation, and increase the quantity of central grains.
机译:为了研究低水泥熟料体系下铁尾矿与矿渣粉混合掺合混凝土的性能,设计了不同铁尾矿粉与矿渣粉的混合比,制备了C30和C50混凝土。分别测量了混凝土的可加工性,强度,碳化深度,氯化物扩散系数,扫描电子显微镜(SEM),能量色散光谱(EDS)和X射线衍射(XRD)。试验结果表明,铁尾矿粉有利于提高可加工性,混凝土强度随铁尾矿粉含量的增加而降低,而碳化深度和氯化物扩散系数随铁尾矿粉含量的增加而增加。在低水泥熟料体系下,铁尾矿粉不应单独使用(矿物混合物的70%以下)。当铁尾矿与矿渣粉的比例为1 1时,混凝土的强度,碳化深度,氯离子渗透系数和微观结构与单一矿渣粉的混凝土大致相同。因此,铁尾矿粉可替代相同数量的S95级炉渣粉。铁尾矿粉不参与水合反应,但可以改善颗粒的级配,达到紧密堆积,并增加中心晶粒的数量。

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