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Use of marble dust and fly ash in stabilization of base material

机译:使用大理石粉尘和粉煤灰稳定基础材料

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Marble dust and fly ash are waste materials and used in various area and industries as an additive material. However, there are still significant amounts of marble dust and fly ash left as waste. Therefore, the reuse of these wastes provides benefits to reduce construction costs and increase sustainability. In this study, a laboratory testing program was conducted on granular soil specimens amended with marble dust and fly ash. The specimens were prepared with granular soil and marble dust-fly ash at different mixing ratios. They were compacted with standard and modified Proctor energies. The specimens were subjected to unconfined compression, California bearing ratio, and freezing-thawing tests. The results of the study show that the strength of a specimen is dependent on the additive ratio, the curing period, compaction energy, and the number of freeze-thaw (F-T) cycles. Generally, unconfined compressive strength (q_(u)) and California bearing ratio (CBR) increased with additive materials, curing times, and high compaction energy. q_(u) decreased and weight loss increased with increasing additives and increasing F-T cycles.
机译:大理石粉尘和飞灰是废料,并在各种领域和行业中用作添加剂。但是,仍然有大量大理石粉尘和飞灰作为废物被留下。因此,这些废物的再利用提供了降低建筑成本和提高可持续性的好处。在这项研究中,对用大理石粉尘和飞灰修正的颗粒状土壤样本进行了实验室测试程序。用不同混合比例的粒状土壤和大理石粉煤灰制备试样。它们使用标准的Proctor能量进行了压实。对样品进行无边压缩,加利福尼亚承载比和冻融测试。研究结果表明,样品的强度取决于添加比例,固化时间,压实能量和冻融(F-T)循环次数。通常,无限制抗压强度(q_(u))和加利福尼亚承载比(CBR)随着添加剂材料,固化时间和高压实能量的增加而增加。随着添加剂的增加和F-T循环的增加,q_(u)减少,重量减轻增加。

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