BINDER COMPOSITIONS BASED ON PORTLAND CEMENT AND VOLCANIC ASH

D. Makhortov, L. Zagorodnyuk, D. Sumskoy
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引用次数: 2

Abstract

: today, preference is given to composite binders. The use of dispersed mineral fillers makes it possible to realize the potential of binders to a large extent, which leads to an increase in the physico-mechanical, operation-al and technical properties of composite binders, as well as building materials based on them, and reduces the con-sumption of expensive binders. The creation of highly effective composite binders is based on the management of their production technology at all stages: the selection of raw materials, the development of optimal compositions, the use of mechanical activation of raw materials, the modification of composite binders with functional chemical additives, and some other methods. The use of volcanic ash in the world is quite diverse, it is used not only as addi-tives for building materials, but also it has found its application in medicine. Many countries are beginning to use volcanic ash as a building material. The article presents the results of obtaining binder compositions of optimal composition based on Portland cement and volcanic ash. Experimental studies of the granulometric composition have been carried out, the results of tests of binder compositions of the compositions: cement – volcanic ash, pre-pared in a vibratory mill, have been presented. The results of physical and mechanical tests of binder compositions with different content of volcanic ash, activated for 10 and 20 minutes in a vibratory mill, have been obtained. Re-search work has been carried out to study the microstructure of volcanic ash.
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基于硅酸盐水泥和火山灰的粘结剂组合物
目前,复合粘合剂更受青睐。分散矿物填料的使用,使粘结剂的潜力在很大程度上得以实现,从而提高复合粘结剂及其基础建筑材料的物理力学、操作性能和技术性能,降低昂贵的粘结剂的消耗。高效复合粘合剂的创造是基于对其生产技术各个阶段的管理:原材料的选择,最佳成分的开发,原材料的机械活化的使用,用功能性化学添加剂对复合粘合剂进行改性,以及其他一些方法。火山灰在世界上的用途是相当多样的,它不仅用作建筑材料的添加剂,而且在医学上也有应用。许多国家开始使用火山灰作为建筑材料。本文介绍了以硅酸盐水泥和火山灰为基材,获得最佳配比的粘结剂组合的结果。对水泥-火山灰组合物的颗粒组成进行了试验研究,给出了在振动磨机中制备的水泥-火山灰组合物的粘结剂组成试验结果。获得了不同火山灰含量的粘结剂组合物在振动磨机中活化10分钟和20分钟的物理力学试验结果。开展了火山灰微观结构的研究工作。
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