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The binding properties of cementitious materials using circulating fluidized bed co-fired fly ash and pulverised coal fly ash

机译:使用循环流化床共烧粉煤灰和煤粉粉煤灰的胶凝材料的结合特性

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This study aims to investigate the binding properties of co-fired fly ash (CFFA) in paste and mortar specimens. Paste specimens containing various CFFA proportions (25%, 50%, 75%, 100% by weight of cement) were conducted and evaluated using setting time tests, water demand tests and compressive strength tests. Mortar specimens containing various CFFA and Pulverised coal fly ash (PCFA) proportions (10%, 20%, 30% by weight of cement) were also conducted and compared with regard to flowability and compressive strength. The test results indicated that the water demand increased as the amount of CFFA replacement increased on the flow level at 110±3%; this is due to the higher ignition loss (L.O.I.). Higher L.O.I. values mean that there are more unburned carbon particles in the CFFA and that most of these carbon particles are porous. The compressive strength of mortar specimens decreased as the amount of CFFA replacement increased. Compared to the chemical compositions of cement (C_(3)S, C_(2)S), the main components of CFFA (Ca(OH)_(2), CaCO_(3), CaO) have lower crystalline strength and compactness. Therefore, the higher amount of CFFA replacement would inevitably cause a reduction of the cement contents of specimens, thereby reducing the compressive strength of the mortar specimens. Thus, an appropriate amount of superplasticiser and CFFA replacement in the mixture is useful with regard to the binding properties of cementitious materials.
机译:本研究旨在探讨共烧粉煤灰(CFFA)在糊剂和砂浆标本中的结合性质。使用设定时间测试,水需求试验和压缩强度试验进行含有各种CFFA比例的糊状试样(25%,50%,75%,水泥100%重量的水泥)。还进行了含有各种CFFA和煤粉粉煤灰(PCFA)的砂浆样品(PCFA)的比例(10%,20%,水泥重量的水泥),并与流动性和抗压强度进行比较。测试结果表明,随着CFFA的替代数量增加,水需求增加了110±3%;这是由于较高的点火损失(l.o.i.)。更高的l.o.i.值意味着CFFA中有更多未燃烧的碳颗粒,并且大多数这些碳颗粒是多孔的。随着CFFA的替代量增加,砂浆样品的抗压强度降低。与水泥的化学组成相比(C_(3)S,C_(2)),CFFA的主要成分(Ca(OH)_(2),CaCO_(3),CAO)具有较低的晶体强度和紧凑性。因此,较高量的CFFA替代物不可避免地导致样品的水泥含量的降低,从而降低了砂浆样本的抗压强度。因此,在混合物中的适当量的超塑性酶和CFFA替代物可用于胶凝材料的结合性质。

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