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首页> 外文期刊>Journal of materials in civil engineering >Alkali-Activated Controlled Low-Strength Material Utilizing High-Calcium Fly Ash and Steel Slag for Use as Pavement Materials
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Alkali-Activated Controlled Low-Strength Material Utilizing High-Calcium Fly Ash and Steel Slag for Use as Pavement Materials

机译:利用高钙粉煤灰和钢渣用作路面材料的碱活性控制的低强度材料

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摘要

This study investigated the performance of alkali-activated, cement-based controlled low-strength materials (CLSMs). The CLSM was produced by mixing fly ash, steel slag, sodium hydroxide, and water with bottom ash (BA) aggregate. Properties of fresh and hardened composites were measured, and tests were conducted to determine their microstructure characteristics. Highlighted properties including slump flow, bleeding, unit weight, unconfined compressive strength, and resilience modulus were reported. The results indicated that the inclusion of 10%-30% slag resulted in a stronger CLSM with a higher Ca/Si ratio in the cementitious matrix of its microstructure. Higher slag content in the CLSM also shortened setting time and led to a lower bleeding rate. A mixture containing slag up to 20% of fly ash was recommended for pavement applications. Finally, the economic and environmental impacts were also preliminarily studied.
机译:本研究研究了碱活化,基于水泥的低强度材料(CLSMS)的性能。 通过将粉煤灰,钢渣,氢氧化钠和水与底灰(Ba)骨料混合来生产CLSM。 测量了新鲜和硬化复合材料的性质,并进行了测试以确定其微观结构特性。 报道了突出的物质,包括坍落度,出血,单位重量,无束缚的抗压强度和弹性模量。 结果表明,包含10%-30%的渣中的熔渣,其微观结构的水泥基质中具有较高的CA / Si比的Clsm。 CLSM中的较高的渣含量也缩短了设定时间并导致了较低的出血率。 建议含有高达20%的粉煤灰的混合物用于路面应用。 最后,还初步研究了经济和环境影响。

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