Assessment of Strength of Concrete containing ESP and IESP as Partial Cement Replacement

Q3 Materials Science
None S. Senthilkumar, None K. Sargunan, None S. Elango
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引用次数: 0

Abstract

In the present era of technically feasible and environmentally compatible low-cost material substitution with the basic ingredients of conventional concrete mix, the infusion of eggshell powder in its raw as well as incinerated forms was tried with the cement mantle. Experimentations carried out to endorse the compressive strength, split tensile strength, flexural strength, workability and durability aspects revealed that it had the edge over the properties standardized for the conventional concrete mix at a specific mix strength of 20 MPa. The experimental results for variations in the treatments of eggshell powder and incinerated eggshell powder corresponding to the responses on the evaluation parameters were compared with the conventional concrete mix by means of regression analysis and modelling. The regression model at more than 95% correlation level of the experimental data fortified the relative supremacy of eggshell powder and incinerated eggshell powder-infused concrete mixes over the conventional concrete mix in terms of workability, strength, and durability. Based on the statistical regression point of inflexion and the point of tolerance, it was clearly established that 20% optimal proportional addition of eggshell powder or 30% addition of incinerated eggshell powder could result in a superlative performance compared to the conventional concrete mix. This final outcome of the optimal combinations of eggshell powder and incinerated eggshell powder incorporated concrete (EPIC) was also test verified by SEM and EDAX analyses.
含ESP和IESP部分替代水泥混凝土强度评价
在当今这个技术上可行、环境兼容的低成本材料替代传统混凝土基本成分的时代,人们尝试在其原料和焚烧形式中注入蛋壳粉,并用水泥包覆。在抗压强度、劈裂抗拉强度、抗折强度、和易性和耐久性方面进行的实验表明,在20mpa的特定混合强度下,它比传统混凝土配合比具有标准化的性能优势。通过回归分析和建模,将蛋壳粉和焚烧蛋壳粉处理的变化对评价参数的响应与常规混凝土配合比进行了比较。通过拐点和容差点的统计回归,明确了蛋壳粉掺量为20%的最佳比例掺量或焚烧蛋壳粉掺量为30%的最佳比例掺量比常规混凝土配合比性能最好。通过SEM和EDAX分析验证了蛋壳粉和焚烧蛋壳粉掺入混凝土(EPIC)的最终最佳组合结果。
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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来源期刊
Journal of Water and Environmental Nanotechnology
Journal of Water and Environmental Nanotechnology Materials Science-Materials Science (miscellaneous)
CiteScore
2.40
自引率
0.00%
发文量
0
审稿时长
8 weeks
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