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Properties and Internal Curing of Concrete Containing Recycled Autoclaved Aerated Lightweight Concrete as Aggregate

机译:混凝土的性能和内部固化,含有再生的高压灭菌的轻质混凝土作为骨料

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摘要

Global warming is a vital issue addressed to every sector worldwide, including the construction industry. To achieve the concept of green technology, many attempts have been carried out to develop low-carbon footprint products. In the construction sector, Autoclaved Aerated Concrete (AAC) has become more popular and been manufactured to meet the construction demand. However, errors from manufacturing process accounted for approximately 3 to 5% of the AAC production. The development of AAC waste as lightweight aggregate in concrete is one of the potential approaches which was extendedly studied in this paper. The results showed that the compressive strength of AAC-LWA concrete was decreased with an increase in volume and coarse size. The optimum mix proportion was the AAC aggregate size of 1/2′′ to 3/8′′ with 20 to 40% replacement to normal weight aggregate. Internal curing by AAC-LWA was also observed and found to provide sufficient water inside the specimens, leading to an achievement in higher compressive strength. The main goal of this study is not only utilising unwanted wastes from industry (recycling of waste materials) but also building up a new knowledge of using AAC-LWA as an internal curing agent as well as the production of value-added lightweight concrete products.
机译:全球变暖是全球各个部门的重要问题,包括建筑业。为实现绿色技术的概念,已经进行了许多尝试来开发低碳足迹产品。在施工部门,高压灭菌的加气混凝土(AAC)变得更加流行,并制造成符合施工需求。但是,制造过程的错误占AAC生产的约3%至5%。 AAC废物作为混凝土中的轻质骨料的发展是本文综合研究的潜在方法之一。结果表明,AAC-LWA混凝土的抗压强度随着体积和粗糙尺寸的增加而降低。最佳混合比例为AAC骨料大小为1/2'至3/8',置换正常重量骨料20至40%。也观察到AAC-LWA的内部固化,发现在标本内提供足够的水,导致抗压强度更高的成就。本研究的主要目标不仅利用来自工业的不需要的废物(废料的回收),而且还建立了使用AAC-LWA作为内部固化剂的新知识,以及增值轻质混凝土产品的生产。

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