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Durability characteristics of concrete using ferronickel slag fine aggregate and fly ash

机译:镍铁渣细骨料和粉煤灰的混凝土耐久性能

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The production process of ferronickel generates an enormous amount of slag (FNS) as a by-product, which has potential for use as a fine aggregate in concrete. However, information regarding the durability of FNS aggregate concrete is very limited in the literature. This study evaluates the durability characteristics of concrete using FNS as up to 100% replacement of natural sand and fly ash as 30% replacement of cement. The volume of permeable voids (VPV) of concrete was found to increase with the increase of FNS aggregate. As a result, sorptivity and chloride permeability showed increasing trends with the increase of FNS aggregate. However, the pozzolanic reaction of fly ash reduced the porosity of the concrete, as evidenced by scanning electron microscopy and energy-dispersive X-ray spectroscopy. The specimens with FNS aggregate and fly ash were classified as 'excellent' in terms of VPV, 'low' in terms of chloride permeability and 'good' in terms of sorptivity. The use of fly ash also reduced the strength losses of FNS aggregate concrete subjected to alternate wet-dry cycles. Overall, a durability equivalent to that of conventional concrete could be achieved when FNS was used as a partial replacement of sand together with fly ash as a partial replacement of cement.
机译:镍铁的生产过程会产生大量的副产品炉渣(FNS),有可能用作混凝土中的细骨料。但是,有关FNS骨料混凝土耐久性的信息在文献中非常有限。这项研究评估了使用FNS作为100%替代天然砂和粉煤灰作为30%替代水泥的混凝土的耐久性能。随着FNS骨料的增加,混凝土的可渗透空隙(VPV)的体积增加。结果,随着FNS聚集体的增加,吸着性和氯化物渗透性显示出增加的趋势。但是,粉煤灰的火山灰反应降低了混凝土的孔隙度,如扫描电子显微镜和能量色散X射线光谱学所证明的。含有FNS骨料和粉煤灰的试样在VPV方面被评为“优秀”,在氯化物渗透率方面被评为“低”,在吸附性方面被评为“良好”。飞灰的使用还减少了经受交替湿-干循环的FNS骨料混凝土的强度损失。总体而言,当FNS用作砂子的部分替代品以及粉煤灰作为水泥的部分替代品时,可以达到与常规混凝土相同的耐久性。

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