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Improving Recycled Aggregate Quality by Mechanical Pre-Processing

机译:通过机械预处理改善回收的聚集体质量

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摘要

Concrete with crushed concrete aggregates (CCA) shows lesser compressive strength than reference concrete with natural aggregates. The goal of this study is to improve the strength of structural concrete with 53% and 100% CCA replacements without increasing the cement content. Thus, improvements in CCA quality are induced by combining mechanical and pre-soaking pre-processing techniques. Mechanical pre-processing by rotating drum is separately pursued on fine and coarse CCA for 10 and 15 min respectively. Results show, adhered mortar content and CCA water absorption reduces as pre-processing duration increases. Pre-processing influences CCA particle grading, flakiness index, shape index, void-content, unit-weight and density, jointly seen as packing density, which increases with pre-processing duration. Water amount to pre-soak CCA before concrete mixing is stable despite grading modifications, due to reduced water absorption resulting from mechanical pre-processing. Compressive strength and workability for pre-processed CCA50 and CCA100 concrete are comparable to reference concrete and show similar trends of improvement with packing density. Packing density markedly shows the quality improvements induced by pre-processing on CCA, maybe considered as one of the quality assessment indexes for CCA. Packing density should be investigated for other recipes to see the stability of the trend with workability and compressive strength.
机译:具有碎混凝土聚集体(CCA)的混凝土显示出比具有自然聚集体的参照混凝土的较小抗压强度。本研究的目标是提高结构混凝土的强度,53%和100%CCA替代品而不增加水泥含量。因此,通过组合机械和预浸式预处理技术来诱导CCA质量的改进。通过旋转滚筒的机械预处理分别在精细和粗糙的CCA上分别追踪10和15分钟。结果表明,粘附的砂浆含量和CCA吸水降低,因为预处理持续时间增加。预处理影响CCA颗粒分级,片状指数,形状指数,空隙含量,单位重量和密度,共同视为填充密度,随着预处理持续时间增加。尽管采用机械预处理导致的吸水率降低,但在混凝土混合之前,水量稳定在混凝土混合前稳定。用于预处理的CCA50和CCA100混凝土的抗压强度和可加工性与参考混凝土相当,展示了填充密度的类似改善趋势。填充密度明显显示通过预处理对CCA进行的质量改进,可能被认为是CCA的质量评估指标之一。应研究包装密度,以便其他食谱看到具有可加工性和抗压强度的趋势的稳定性。

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