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Physical and mechanical characteristics of sustainable self-consolidating concrete incorporating high volume fly ash and cement kiln dust

机译:掺入大量粉煤灰和水泥窑粉尘的可持续自固结混凝土的物理和机械特性

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In recent years, sustainable development has become a global issue and several industries (including concrete industry) have made every effort to reduce the high material cost, high energy depletion and CO_(2)emission in addition to soundly eliminate industrial waste residue. The purpose of this study is to investigate the possibility of production sustainable self-consolidating concrete (SSC) with green materials: Portland limestone cement (PLC), high volume class F fly ash (HVFA) and locally available cement kiln dust (CKD) depending on the limitations of fresh properties that is specified by ACI 273R-07 and EFNARC and to assess the effects of these green materials on the hardened properties. Moreover, microstructure of this concrete was also investigated by means of scanning electron microscopy (SEM). The results displayed that by replacing high levels of cement by type F fly ash and locally available CKD, it was conceivable to make eco-friendly SCC, satisfying the rheological demands for self-consolidating, with agreeable 28-day compressive strength.
机译:近年来,可持续发展已成为全球性问题,除合理消除工业废渣外,数个行业(包括混凝土行业)已尽一切努力减少高昂的材料成本,高能耗和CO_(2)排放。这项研究的目的是研究使用绿色材料生产可持续的自固结混凝土(SSC)的可能性:根据ACI 273R-07和EFNARC规定的新鲜性能限制,并评估这些绿色材料对硬化性能的影响。此外,还通过扫描电子显微镜(SEM)研究了该混凝土的微观结构。结果表明,用F型粉煤灰和当地可用的CKD替代高含量的水泥,可以制造出生态友好的SCC,满足自固结的流变要求,并具有令人满意的28天抗压强度。

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