Effects of Slag Addition and Mechanical Pre-Processing on the Properties of Recycled Concrete in Terms of Compressive Strength and Workability

IF 0.7 Q4 CONSTRUCTION & BUILDING TECHNOLOGY
Madumita Sadagopan, K. Malaga, M. Lundin, A. Nagy
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引用次数: 2

Abstract

Abstract Concrete waste as crushed concrete aggregates (CCA) in structural concrete prolongs the technical life of the reference concrete accomplishing closed loop recycling. CCA concrete reaches the reference concrete compressive strength and workability by the densification of CCA and cement paste. Our previous study demonstrates CCA densification by mechanical pre-processing, aggregate quality improvements discerned by increased packing density giving reference concrete strength and workability. This study addresses paste densification with blast furnace slag (GGBS) to replace 30 (wt.%) of Portland cement at reference concrete w/b ratio 0.5 and a lower w/b 0.42. Two CCA replacements are investigated: fine aggregates, CCA50; overall aggregate replacement, CCA100. Compressive strength results show that both CCA50, CCA100 mixes achieve reference values at w/b 0.42, only CCA100 achieves reference value at w/b 0.5 as a climate-optimized concrete. The CCA50 mix-w/b 0.5 reaches reference strength when paste densification by GGBS is combined with CCA densification from mechanical pre-processing of aggregates. The 7-day strength of CCA100 with GGBS increases by 11% by mixing with pre-soaked GGBS. Statistical analysis of CCA100 strength results shows significant improvements with GGBS compared to mechanical pre-processing. Significant improvements are possible in CCA50 mix for a combination of mechanical pre-processed aggregates and GGBS replacement.
掺渣和机械预处理对再生混凝土抗压强度和和易性的影响
混凝土废料作为结构混凝土中的混凝土碎骨料(CCA),可以延长参考混凝土的技术寿命,实现闭环回收。CCA混凝土通过与水泥浆体的密实,达到参考混凝土的抗压强度和和易性。我们之前的研究表明,通过机械预处理,CCA致密化,骨料质量的改善通过增加填料密度来识别,从而提供参考混凝土强度和和易性。本研究解决了在参考混凝土w/b比为0.5和w/b比更低0.42的情况下,用高炉矿渣(GGBS)代替30 (wt.%)波特兰水泥的膏体致密化问题。研究了两种CCA替代品:细集料CCA50;总骨料置换,CCA100。抗压强度结果表明,CCA50、CCA100混合料在w/b为0.42时达到参考值,只有CCA100在w/b为0.5时达到参考值。CCA50 -w/ b0.5混合料与GGBS膏体密实与机械预处理集料CCA密实相结合达到参考强度。与预浸泡的GGBS混合后,加GGBS的CCA100的7天强度提高11%。统计分析表明,与机械预处理相比,GGBS对CCA100的强度有显著提高。通过机械预处理骨料和GGBS替代品的组合,CCA50混合物可能会有重大改进。
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来源期刊
Nordic Concrete Research
Nordic Concrete Research CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
20.00%
发文量
8
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