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Development of Sustainable Engineered Cementitious Composites Using Recycled Concrete Aggregates-Feasibility Study Based on Mechanical Properties

机译:使用基于机械性能的再生混凝土综合可行性研究的可持续工程化水泥复合材料的发展

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Engineered cementitious composites (ECC) are special fiber-reinforced cementitious composites with outstanding performance. However, the high cost and unavailability of the special sand (that is, microsilica sand [MSS]) used as the aggregate for such composites have limited its use and even made it impractical in some geographical locations. Therefore, there is a dire need to find alternative materials that can be used to replace MSS in ECC. This study was carried out to investigate the feasibility of using recycled concrete (RC) as an alternative aggregate, which is a much cheaper and more sustainable option as opposed to the conventional MSS currently used in ECC. Fly ash-the coal-based, thermal, plant-generated waste material-was incorporated as an alternative binder to partially replace the traditional binder, port-land cement (PC), which is a large greenhouse emitter. Thus, the use of fly ash to replace a high volume of ECC would result in a reduction in the carbon footprint of ECC. The RC was used to replace the MSS in proportions ranging from 0 to 100% at an increment of 25%. The mechanical performance of the ECC mixtures was assessed in terms of the compressive, tensile, and flexural properties. The results obtained from this study showed that the use of RC as a partial replacement of MSS in ECC mixtures resulted in a satisfactory ECC mixture. However, at a replacement ratio of 75% and above, the performance of ECC may not be acceptable. The sustainability index assessment of the mixtures indicates that the use of RC as a replacement of up to 50% of MSS is optimum.
机译:工程化水泥复合材料(ECC)是具有出色性能的特殊纤维增强水泥复合材料。然而,用作这种复合材料的聚集体的特殊砂(即Microsilica Sand [MS)的高成本和不可用性限制了其使用,甚至在一些地理位置中不切实际。因此,有脚步需要找到可用于更换ECC中MS的替代材料。本研究进行了研究使用再生混凝土(RC)作为替代总量的可行性,这是与ECC目前使用的常规MS的更便宜和更可持续的选择。粉煤灰 - 基于煤,热,植物产生的废料 - 被作为替代粘合剂掺入,以部分取代传统的粘合剂,陆地水泥(PC),这是一个大型温室发射器。因此,使用粉煤灰来取代大量的ECC将导致ECC的碳足迹降低。 RC用于以0至100%的比例替换MSS,增量为25%。在压缩,拉伸和弯曲性能方面评估了ECC混合物的机械性能。本研究获得的结果表明,使用RC作为ECC混合物中MS的部分替代导致令人满意的ECC混合物。然而,以75%及以上的替代比率,ECC的性能可能不可接受。这些混合物的可持续性指数评估表明,使用RC作为高达50%的MSS的使用是最佳的。

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