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The synergetic interaction of chemical admixtures on the properties of eco-friendly lightweight concrete from industrial technogenic waste

机译:化学混合对工业技术垃圾生态友好轻质混凝土性能的协同相互作用

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It is important to know how different superplasticisers (SP) types affect the rheological properties of foamed cement pastes and influence the physical and mechanical properties of eco-friendly porous lightweight aggregate concretes based on industrial technogenic waste. Three tested superplasticisers-ligno sulfonates SP(S), polycarboxylates SP(C), polyacrylates SP(A), air-entraining admixture (AEA) and their combinations-differently prolong the setting time of Portland cement (OPC) pastes. The results show that SP(A) retards the setting time of OPC paste to the minimum extent both in individual use or in combination with AEA. The dynamic viscosity of OPC pastes depends on the metakaolin additive (MA) to OPC ratio and AEA. In pastes with the highest MA to OPC ratio, the dynamic viscosity is 2.46 times higher than in a paste without MA. The effect of AEA in the pastes expresses itself in increased dynamic viscosity, up to 50.8% compared to the same samples without AEA. Increasing the MA to OPC ratio in pastes with AEA and SP(A) allows entraining a higher volume of air, which results in uniform pore distribution and increasing apparent porosity by 2.2 times. Increasing the MA to OPC ratio in a eco-friendly lightweight aggregate concrete (LAC) sample creates a highly porous macrostructure, resulting in decreased density, up to 40.1%, and thermal conductivity coefficient, up to 2.1 times (from 0.152 to 0.073 W/(m.K) and increased water absorption, up to 44.8% (from 5.73% to 8.3%). With an increased MA to OPC ratio in a LAC sample series, the compressive strength decreased up to 14 times after 7 days of hardening, however, after 56 days of hardening, the tendency of increase for compressive strength is observed. (C) 2020 Elsevier Ltd. All rights reserved.
机译:重要的是要了解不同的超血塑化器(SP)类型如何影响泡沫水泥浆料的流变性能,并影响基于工业技术废料的环保多孔轻质骨料混凝土的物理和力学性能。三个经测试的超塑性硅酸盐 - 木质磺酸盐SP(S),聚羧酸酯SP(C),聚丙烯酸酯SP(A),空气录制混合物(AEA)及其组合 - 不同地延长了波特兰水泥(OPC)糊的凝固时间。结果表明,SP(a)将OPC粘贴的设定时间延迟到个体使用或与AEA组合的最小程度。 OPC浆料的动态粘度取决于MetaKaolin添加剂(MA)对OPC比和AEA。在与OPC比率最高的浆料中,动态粘度比没有MA的糊状物高2.46倍。 AEA在糊状物中的作用表达了动态粘度增加,与没有AEA的相同样品相比,高达50.8%。将MA与AEA和SP(A)的糊状物中的糊状物增加允许夹带较高体积的空气,这导致均匀的孔分布并增加表观孔隙率2.2倍。在环保轻质聚集体混凝土(LAC)样品中增加MA对OPC比率产生高度多孔的宏观结构,导致密度降低,高达40.1%,导热系数,高达2.1倍(从0.152到0.073 w / 0.073 (MK)和吸水性增加,高达44.8%(从5.73%到8.3%)。在LAC样品系列中增加MA对OPC比率,抗压强度高达14次硬化后减少了14倍,然而,在硬化56天后,观察到抗压强度的增加趋势。(c)2020 elestvier有限公司保留所有权利。

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