稻壳灰与粉煤灰配合料的间隙级配混凝土

D. Bui, P. Stroeven
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引用次数: 0

摘要

粉煤灰在水泥和混凝土中的应用越来越广泛,因为它降低了成本,节省了材料和能源,提高了粉煤灰混凝土的阻力和耐久性。(F级)混凝土的缺点之一是其潜在的相对较低的早期强度。高活性火山灰如硅灰和偏高岭土可用于提高粉煤灰混凝土的性能。然而,硅灰和偏高岭土相对稀缺和昂贵。稻壳是通过控制稻壳燃烧产生的活性火山灰,迄今为止是一种农业废物。介绍了稻壳灰与粉煤灰在高性能混凝土中的复合应用。高性能混凝土以细砂级配混凝土骨料为基础。此外,还应用了高效减水剂。与粉煤灰混凝土相比,三元混合水泥混凝土表现出更大的强度增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gap-Graded Concrete Blended with Rice Husk Ash and Fly Ash
Fly ash is increasingly used on a worldwide scale in cement and concrete because of reduced cost, material and energy savings, and improved resistance and durability of the fly ash concrete. One of the drawbacks of (Class F) concrete is its potentially relatively low early strength. Highly reactive pozzolanas such as silica fume and metakaolin can be used to enhance the properties of fly ash concrete. However, silica fume and metakaolin are relatively scarce and expensive. Rice husk is an active pozzolana produced by controlled burning of rice husks, hitherto an agricultural waste. This paper describes the combined use of rice husk ash (RHA) and fly ash in high-performance concrete. The high-performance concrete was based on a gap-graded concrete aggregate with fine sand. Further, a superplasticizer was applied. These ternary blended cement concretes showed greater strength gain than the fly ash concrete.
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