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Effect of ferronickel slag as fine aggregate on properties of concrete

机译:Ferronickel渣作为混凝土性质的效果

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This study investigated the influence of ferronickel slag replacing sand as fine aggregate on the properties of concrete under the same superplasticizer content. The results indicate that the addition of two types of ferronickel slag decrease the workability of fresh concrete. The addition of blast furnace slag (BS) obviously decreases the apparent density of concrete while the addition of electric furnace slag (ES) slightly increases the apparent density. Mechanical strengths increase with BS content increasing, but decrease with ES content increasing. High BS content can improve the resistance of concrete to chloride ion penetration while using ES as fine aggregate has little effect on the resistance to chloride ion penetration. Water absorption of concrete decreases with BS content increasing but increases with ES content increasing. BS has a positive impact on sulfate attack resistance and fire resistance. Using 25% ES also has an active effect on resisting sulfate attack. However, the addition of ES has little effect on improving the fire resistance of concrete. As a result, using 75% BS or 25% ES is the best choices in engineering application. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究调查了Ferronickel渣替代砂作为细骨料对混凝土性质的影响,在相同的超级塑化剂含量下。结果表明,添加了两种类型的铁镍渣降低了新混凝土的可加工性。添加高炉炉渣(BS)显然降低了混凝土的表观密度,同时添加电炉渣略微增加表观密度。使用BS含量增加,机械强度增加,但随着ES含量的增加而降低。高BS含量可以改善混凝土对氯离子渗透的电阻,同时使用ES,因为细聚集物对抗氯离子渗透的抗性几乎没有影响。混凝土的吸水率随着BS含量的增加而降低,但随着ES含量的增加,增加。 BS对硫酸盐发生抗性和耐火性产生积极影响。使用25%ES也有积极影响抗硫酸盐攻击。然而,添加ES对改善混凝土的耐火性影响几乎没有影响。结果,使用75%BS或25%ES是工程应用中的最佳选择。 (c)2019 Elsevier Ltd.保留所有权利。

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