Optimal concentration of post-alcohol bard and microsilica in cement-sand mixtures determination

R. Lukpanov, D. Dyussembinov, A. Altynbekova, S. Yenkebayev, Talal Awwad
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Abstract

The article presents part of the results of the study of the components of foam concrete made by the two-stage foam injection method, in particular, the influence of microsilica and post-alcohol bard on the setting time and strength of cement. The paper shows the methodology for determining the compressive and flexural strength, selection of the composition of components, analysis, and evaluation of setting times, and strength characteristics of the compared samples. During the study, laboratory experiments were performed to better understand how these additives affect the behavior of cement mixtures. The studies carried out allow us to determine the influence of the modified additive components on the properties of foamed concrete during the production process. The setting time analysis presented in the study revealed that increasing the concentration of the additive significantly reduced the setting time performance of cement. With increasing the content of microsilica and post-alcohol bard at 10% and 30% of the cement weight, the setting initiation and completion times are significantly reduced. To evaluate the change in strength, samples were made and tested in compression and flexure at ages of 3, 7, 14, 21, and 28 days of normal moisture curing. According to the results, it was found that the additive, by accelerating the curing, promotes strength improvement both at an early age and at the design age (28 days). The experimental results showed that the flexural and compressive strength of the material increased as the concentration of the additive increased. The maximum increase in flexural and compressive strength was recorded at additive concentrations of 10% and 30%. This indicates the important role of additives in the strengthening of materials and their potential application in construction. The additive showed an optimum positive effect, therefore, the use of this percentage of additive is the most effective for increasing the compressive and flexural strength of concrete.
测定水泥-砂混合物中醇后巴德和微硅的最佳浓度
本文介绍了两段泡沫注入法制备泡沫混凝土组分的部分研究结果,特别是微二氧化硅和后醇硬对水泥凝结时间和强度的影响。本文展示了确定抗压和抗弯强度的方法,选择成分组成,分析和评估设置时间,以及比较样品的强度特征。在研究过程中,进行了实验室实验,以更好地了解这些添加剂如何影响水泥混合物的行为。所进行的研究使我们能够确定在生产过程中改性添加剂成分对泡沫混凝土性能的影响。本研究的凝结时间分析表明,增加添加剂的浓度会显著降低水泥的凝结时间性能。将微二氧化硅和后醇硬石的含量分别提高到水泥质量的10%和30%,可显著缩短固井起始和完井时间。为了评估强度的变化,制作了样品,并在3、7、14、21和28天的正常水分养护下进行了压缩和弯曲测试。结果表明,添加剂通过加速固化,促进了早期龄期和设计龄期(28天)强度的提高。实验结果表明,随着添加剂浓度的增加,材料的抗折强度和抗压强度均有所提高。当添加剂浓度分别为10%和30%时,材料的抗折强度和抗压强度增幅最大。这表明添加剂在材料强化中的重要作用及其在建筑中的潜在应用。添加剂表现出最佳的正效应,因此,使用该比例的添加剂对提高混凝土的抗压和抗弯强度是最有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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