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Optimization and mechanical-physical characterization of geopolymers with Construction and Demolition Waste (CDW) aggregates for construction products

机译:建筑用拆卸废弃物(CDW)拱结造产产品的优化与机械物理特征

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The paper presents the mechanical and physical characterization of a metakaolin-slag-fly ash-potassium silicate geopolymer mortar embedding inorganic recycled aggregates from Construction and Demolition Waste (CDW). The binder was holistically optimized to comply with the pilot plant requirements for producing architectural panels of satisfactory quality, among them: reduced viscosity, minimum open time of 1 h, use of commercial reagents, sufficient strength and limited shrinkage. Size and aspect ratio of small scale cylindrical specimens were investigated in compression, comparing the performance of tested geopolymers to available provisions for natural rocks, cement concrete and mortars. Empirical correlations between compressive and splitting tensile strength were calibrated through the results of about 130 geopolymer mixtures produced in former and current activities. Lastly, the suitability of reusing geopolymers at their end-of-life as recycled aggregates in a new geopolymer production was preliminarily assessed to explore the feasibility of a closed-loop process. (C) 2020 The Authors. Published by Elsevier Ltd.
机译:本文介绍了亚莨菪碱 - 渣 - 飞氨基磷酸硅酸钾晶硅砂浆的机械和物理表征,将无机再循环从施工和拆除废物(CDW)中嵌入无机再循环。粘合剂是全面优化的,以符合生产令人满意的质量的架构面板的试验装置要求:降低粘度,最小开放时间为1小时,使用商业试剂,充分的强度和限量收缩。在压缩中研究了小刻度圆柱形样品的尺寸和纵横比,比较了测试地质聚合物的性能,对天然岩石,水泥混凝土和迫击炮的可用规定进行了比较。通过在前和电流活性产生的约130个地质聚合物混合物的结果校准压缩和分裂拉伸强度之间的经验相关性。最后,初步评估了在新的地质聚合物生产中作为再生聚集体重新使用地缘聚合物的适用性,以探讨闭环过程的可行性。 (c)2020作者。 elsevier有限公司出版

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