首页> 外文期刊>Journal of King Saud University-Engineering Sciences >Effect of rice husk ash admixed with treated sisal fibre on properties of lateritic soil as a road construction material
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Effect of rice husk ash admixed with treated sisal fibre on properties of lateritic soil as a road construction material

机译:将稻壳纤维混合稻壳纤维纤维纤维纤维效果对横向土壤性能作为道路施工材料

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The effect of rice husk ash admixed with treated sisal fibre on properties of lateritic soil as a road construction material was studied. The natural soil falls under A-7-6(10) classification using the American Association of State Highway and Transportation Officials (AASHTO) classification and CL (Lean Clay) according to Unified Soil Classification System (USCS). Treatment of the soil was done with Rice Husk Ash (RHA) and treated Sisal Fibre (SF) in stepped concentrations of 0, 2, 4, 6, 8% and 0, 0.25, 0.5, 0.75, 1.0% by dry weight of soil, respectively. Preliminary test, compaction test (using British Standard light (BSL) energy) and unconfined compressive strength (UCS) test were carried out. Analysis of variance was carried out using Microsoft Excel Analysis Tool Pak Software Package. Mini-tab R15 Software was used for regression analysis. Laboratory results were used to generate reliability indices using a FORTRAN based first order reliability program. Outcome of the laboratory tests show that MDD decreased from 1.85?mg/m3for the natural soil to 1.73?mg/m3at 0% RHA/1% SF content. The OMC increased from 18% for the natural soil to 26.5% at 6% RHA/1% SF content. The UCS increased from 100.57?kN/m2for the natural soil to 139.38?kN/m2at 0% RHA/0.25%SF content by dry weight of soil. The increasing trend continued to 696.63?kN/m2at optimum 6% RHA/0.75%SF content by dry weight of soil, which met the regulatory minimum UCS value of 687–1373?kN/m2for pavement applications. Reliability indices varied for all the variables considered with MDD and OMC having more significant effect on the UCS. Based on the results obtained, an optimum blend of 6%RHA/0.75% SF content by dry weight of soil is recommended for used as sub-based material for lightly trafficked roads.
机译:将稻壳纤维混合的稻壳纤维与道路施工材料的特性混合的稻壳。根据统一的土壤分类系统(USCS),使用美国国家公路和运输官员(AASHTO)分类和CL(LEX CLAY)的美国协会,自然土壤落下了A-7-6(10)分类。用稻壳灰(RHA)处理土壤,并在步进浓度为0,2,4,6,8%和0,0.25,0.5,0.75,1.0%的土壤中进行处理过的Sisal纤维(SF) , 分别。进行初步试验,进行压实试验(使用英国标准光(BSL)能量)和非束缚的抗压强度(UCS)测试。使用Microsoft Excel分析工具Pak软件包进行差异分析。 Mini-Tab R15软件用于回归分析。实验室结果用于使用基于FORTRAN的第一订单可靠性计划产生可靠性指标。实验室测试的结果表明,MDD从天然土壤的1.85×20μg/ m 3降低至1.73Ω·mg / m3at 0%rha / 1%sf含量。 OMC从天然土壤的18%增加到6%RHA / 1%SF含量的26.5%。 UCS从100.57?KN / M2增加到139.38〜139.38〜0%RHA / 0.25%SF含量,通过干重的土壤。越来越趋势持续至696.63?KN / M2AT通过土壤干重优化6%RHA / 0.75%SF含量,符合687-1373的监管最低UCS值为687-1373ακB/ m2。可靠性指数因MDD和OMC考虑的所有变量而变化,对UC具有更大的影响。基于所得的结果,建议用土壤干重的6%RHA / 0.75%SF含量的最佳共混物,用于用作亚基被贩运的道路的亚基材料。

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