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首页> 外文期刊>Revista de Chimie >Mechanism of Cement Paste with Different Particle Sizes of Bottom Ash as Partial Replacement in Portland Cement
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Mechanism of Cement Paste with Different Particle Sizes of Bottom Ash as Partial Replacement in Portland Cement

机译:不同粒径的水泥浆料机制底部尺寸作为波特兰水泥的局部替代品

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摘要

Manufacturing of Portland cement consists of high volume of natural aggregates which depleted rapidly in today construction field. New substitutable material such as bottom ash replace and target for comparable properties with hydraulic or pozzolanic properties as Portland cement. This study investigates the replacement of different sizes of bottom ash into Portland cement by reducing the content of Portland cement and examined the mechanism between bottom ash (BA) and Portland cement. A cement composite developed by 10% replacement with 1, 7, 14, and 28 days of curing and exhibited excellent mechanical strength on day 28 (34.23 MPa) with 63 pm BA. The porous structure of BA results in lower density as the fineness particles size contains high specific surface area and consume high quantity of water. The morphology, mineralogical, and ternary phase analysis showed that pozzolanic reaction of bottom ash does not alter but complements and integrates the cement hydration process which facilitate effectively the potential of bottom ash to act as construction material.
机译:波特兰水泥的制造包括大量的天然聚集体,在今天的建筑领域迅速耗尽。新的可替代材料如底灰更换和靶向与波特兰水泥的液压或火山灰特性的可比性。本研究通过降低波特兰水泥的含量来调查更换不同尺寸的底灰进入波特兰水泥,并检查了底灰(BA)和波特兰水泥之间的机制。用1,7,14和28天的固化剂置换的水泥复合材料,并在第28天(34.23MPa)具有63μmBa的优异机械强度。由于细度颗粒尺寸含有高比表面积并消耗大量水,因此BA的多孔结构导致较低的密度。形态学,矿物学和三元相分析表明,底灰的火山灰反应不会改变,但补充并整合水泥水合过程,有效地促进底灰作为施工材料的潜力。

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