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首页> 外文期刊>Journal of Cleaner Production >Incorporation of high-volume fly ash waste and high-volume recycled alumina waste in the production of self-consolidating concrete
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Incorporation of high-volume fly ash waste and high-volume recycled alumina waste in the production of self-consolidating concrete

机译:在生产自密实混凝土时将大量粉煤灰废料和大量再循环氧化铝废料合并

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In this article, we considered the properties of self-consolidating concrete (SCC) into which both high volume fly ash waste (FA) and high-volume recycled alumina waste (AW) were incorporated. FA was used as a cement substitution at 40% and 60%, and AW was used as a substitute for fine aggregate at 25%, 50%, 75%, and 100 %wt. The SCC blends were designed with the intention of creating a controlled flowing slump. In this study, the workability and mechanical properties of the blends were investigated by utilizing slump flow, J-ring flow behavior, blocking flow evaluation, V-funnel, compressive strength, and ultrasonic pulse velocity (UPV) estimations. The findings show that, compared with SCC without AW, the SCC blends that included AW required increased doses of superplasticizer and produced denser fresh concrete. With the increased cement content and altered FA content, the percentage of superplasticizer required and thickness of the fresh SCC decreased. When AW was incorporated at between 25% and 75%, its rheological and mechanical benefits became significant enough that including it in SCC became practical. Eventually, it is possible to manufacture SCC economically by using high volumes of FA and AW and even make it possible to develop green and environmentally friendly SCC. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,我们考虑了自凝结混凝土(SCC)的性能,其中掺入了高含量的粉煤灰废物(FA)和高含量的再生氧化铝废物(AW)。 FA被用作40%和60%的水泥替代品,而AW被用作25%,50%,75%和100%wt的细骨料的替代品。 SCC共混物的设计旨在产生可控的坍落度。在这项研究中,共混物的可加工性和机械性能通过利用坍落度流动,J形环流动行为,阻塞流动评估,V型漏斗,抗压强度和超声脉冲速度(UPV)估计进行了研究。研究结果表明,与不含AW的SCC相比,包含AW的SCC共混物需要增加高效减水剂的用量并生产出更致密的新鲜混凝土。随着水泥含量的增加和FA含量的改变,所需的高效减水剂百分比和新鲜SCC的厚度均降低。当AW的掺入量在25%到75%之间时,其流变和机械效益变得十分显着,以至于将其包含在SCC中就变得切实可行。最终,通过使用大量的FA和AW可以经济地生产SCC,甚至有可能开发出绿色环保的SCC。 (C)2017 Elsevier Ltd.保留所有权利。

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