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Utilization potential of aerated concrete block powder and clay brick powder from C&D waste

机译:拆建废加气混凝土块粉和粘土砖粉的利用潜力

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This paper intends to study the recycled powder generated from aerated concrete blocks and sintered clay bricks. The powder was divided into different groups according to particle sizes with ranges of 0-0.045 mm, 0.045-0.075 mm and 0.075-0.15 mm. First, the energy consumption to prepare the powder with different particle sizes was calculated according to the grinding time. Various groups of powder were used to cast mortar samples with cement replacements of 10%, 20% and 30%. The slump and slump loss of the fresh mortar and the mechanical properties of the hardened mortar after 28 days of curing were investigated, as well as the shrinkage within 60 days. The results show that aerated concrete blocks are easier to crush than sintered clay bricks, but the energy consumption of grinding aerated concrete blocks into powder finer than 0.30 mm is higher than that of grinding sintered clay brick powder, which is verified by the energy consumption analysis. The mortar strength can be improved by replacing 10% cement with the recycled powder. The activities of three kinds of powder, from fine to coarse, obtained from aerated concrete blocks are 98.4%, 83.6% and 74.6%. For sintered clay brick powder, the activities are 73.7%, 87.9% and 85.8%. The aerated concrete block powder particles contain 2-3 mu m pores, which is the reason that it severely reduces the fluidity of the mortar, leading to considerably more shrinkage. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文旨在研究加气混凝土块和烧结粘土砖产生的再生粉。根据粒度将粉末分为0-0.045mm,0.045-0.075mm和0.075-0.15mm的不同组。首先,根据研磨时间计算制备具有不同粒径的粉末的能量消耗。使用各种类型的粉末浇铸砂浆样品,其中水泥替代量为10%,20%和30%。研究了新鲜砂浆的坍落度和坍落度损失以及固化28天后硬化砂浆的机械性能以及60天内的收缩率。结果表明,加气混凝土砌块比烧结黏土砖更易破碎,但将加气混凝土砌块磨成粉小于0.30 mm的能耗要比研磨烧结粘土砖粉末高,这通过能耗分析得到了验证。 。通过用再生粉末代替10%的水泥可以提高砂浆强度。从加气混凝土块获得的三种粉末(从细粉到粗粉)的活性分别为98.4%,83.6%和74.6%。对于烧结粘土砖粉,活性为73.7%,87.9%和85.8%。加气的混凝土砌块粉末颗粒含有2-3微米的孔,这是其严重降低砂浆流动性并导致更大收缩的原因。 (C)2019 Elsevier Ltd.保留所有权利。

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