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首页> 外文期刊>Journal of materials in civil engineering >Optimization of the Strength Activity of Rice Husk Ash in Cementitious Mixtures
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Optimization of the Strength Activity of Rice Husk Ash in Cementitious Mixtures

机译:水稻壳灰在水泥混合物中的优化优化

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In this study, the effects of some of the important manufacturing parameters of rice husk ash (RHA) on its mechanical performance in mortar mixtures is investigated. All of the presented results belong to a comprehensive experimental program where samples of plain and acid-leached rice husks were slowly heated up to 700°C and combusted at such temperature for different lengths of time, from 0.25 to 16 h. The obtained ashes were ground for different lengths of time, ranging from 0.33 to 16 h, and the resulting pozzolans were replaced for cement at different levels (5%, 10%, and 15% by mass) in mortar mixtures with similar flowabilities. The 28-day compressive strengths of the mortars were measured, and the results were analyzed via regression analysis. The analysis outcome suggests that acid leaching does not necessarily lead to better mechanical performance, and precise optimization of other combustion parameters is needed to improve the performance of RHA. Under optimal conditions (acid leaching followed by combustion at 700°C for 16 h), replacement of 11% cement with such RHA was found to result in approximately 14% greater strength results compared to that of plain RHA-blended mixture and 78% greater strength compared to that of the 100% ordinary portland cement mixture. Despite the significant improvement in strength, it is concluded that acid leaching is not necessarily justifiable considering economic and environmental factors.
机译:在这项研究中,研究了稻壳灰(RHA)一些重要的制造参数对砂浆混合物中的机械性能的影响。所有呈现的结果都属于全面的实验计划,其中普通和酸浸出的稻壳样品缓慢加热至700℃并在这种温度下燃烧,以进行不同的时间,从0.25到16小时。将获得的灰烬接地,不同的时间长度,从0.33〜16小时范围,并且在砂浆混合物中替换所得的Pozzolans在具有类似流动性的砂浆混合物中的不同水平(5%,10%和15质量%)。测量砂浆的28天压缩强度,并通过回归分析分析结果。分析结果表明,酸浸出并不一定导致更好的机械性能,并且需要精确地优化其他燃烧参数来改善rha的性能。在最佳条件下(酸浸出,然后在700℃下燃烧16小时),发现与这种rha的11%水泥的替代物导致与普通的RHA混合物混合物相比的强度较高的强度效果约为14%,78%更高与100%普通植物水泥混合物相比的强度。尽管实力显着提高,但得出结论,酸浸出不一定是考虑经济和环境因素的合理性。

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