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Use of Recycled Concrete Aggregate in High-Calcium Fly Ash Geopolymer Concrete

机译:在高钙粉煤灰地缘聚合物混凝土中使用再生混凝土骨料

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The comparison results of using crushed limestone (NA) and recycled concrete aggregates (RCA) as coarse aggregates in high-calcium fly ash geopolymer concrete with and without temperature curing are presented. Local river sand with a fineness modulus of 2.1, sodium hydroxide solution concentrations of 8, 12, and 16 Molar, and sodium silicate were used to produce geopolymer concrete (GC). The curing was separated in two conditions: the first was cured at ambient temperature (AT) and another was cured at temperature of 60°C for 48 hrs. (CT). The compressive strength, thermal conductivity, and ultra pulse velocity of GC were investigated at age 7 days. The results found that RCA could be use as coarse aggregate in GC. The thermal conductivity increased with the increasing of compressive strength. Curing at 60°C yielded compressive strength about 3 times higher than that of AT. However, both AT and CT curing, GC containing RCA had thermal conductivity and ultra pulse velocity lower than those of containing NA.
机译:呈现了使用碎石灰石(Na)和再循环混凝土聚集体(RCA)作为具有且不温度固化的高钙粉煤灰地质聚合物混凝土中的粗聚集体的比较结果。本地河砂具有2.1的细度模量,氢氧化钠溶液浓度为8,12和16摩尔,以及硅酸钠产生地质聚合物混凝土(GC)。固化在两个条件下分离:首先在环境温度(AT)下固化,另一种在60℃的温度下固化48小时。 (CT)。在7天时,研究了GC的抗压强度,导热性和超脉冲速度。结果发现RCA可以用作GC中的粗骨料。随着抗压强度的增加,导热率增加。在60℃下固化产生的抗压强度比在AT的高度高3倍。然而,AT和CT固化,GC含有RCA的导热性和比含Na低的超脉冲速度。

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