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PHYSICAL AND MECHANICAL PROPERTIES OF CEMENT-BASED COMPOSITES WITH BAGASSE ASH

机译:水泥基含烟灰复合材料的物理和力学性能

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Bagasse ash (BA), a byproduct of sugar and alcohol production, is among the potential pozzolanic materials that can be blended with Portland cement. The purpose of this study was to investigate the properties of cement-based composites that have various particle sizes of BA and cement replacement percentages. Three particle size distributions passing the No. 100, No. 200, and No. 325 sieves and replacement of cement at 10%, 20%, and 30% by weight of binder, were designed to cast nine BA composites. The performance of the BA specimens was compared with reference mortars produced using ordinary Portland cement (OPC). The experimental results showed that when the replacement of BA increased, the flow spread of fresh mortars decreased. The increase in the replacement of cement with BA also reduced the compressive strength of the BA specimens. Overall, the 56-day-old specimen with 10% BA passing the No. 325 sieve demonstrated the highest performance regarding the compressive strength, drying shrinkage, water absorption, initial surface absorption, and chloride ion penetration. Moreover, this specimen showed denser microstructural properties determined using a scanning electron microscope compared with those of OPC. Based on these results, 10% BA passing the No. 325 sieve was considered the optimal dosage and particle size.
机译:蔗糖灰(BA)是糖和酒精生产的副产品,是可以与硅酸盐水泥混合的潜在火山灰材料。这项研究的目的是研究具有各种粒径BA和水泥替代百分比的水泥基复合材料的性能。设计了三种分别通过100号,200号和325号筛的粒度分布,并分别以粘合剂的10%,20%和30%的重量替换了水泥,以铸造9种BA复合材料。将BA样品的性能与使用普通波特兰水泥(OPC)生产的参考砂浆进行比较。实验结果表明,当BA的置换量增加时,新鲜砂浆的流动扩散减小。用BA替代水泥的增加也降低了BA试样的抗压强度。总体而言,具有10%BA且通过325号筛的56天龄样品在抗压强度,干燥收缩,吸水率,初始表面吸收率和氯离子渗透方面表现出最高的性能。而且,与OPC相比,该样品显示出使用扫描电子显微镜确定的更致密的微观结构特性。根据这些结果,将10%BA通过325号筛子视为最佳剂量和最佳粒径。

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