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Understanding the effect of compaction energies on the strength indices and durability of oyster shell ash-lateritic soil mixtures for use in road works

机译:了解压实能量对牡蛎壳灰 - 横晶土壤混合物用于道路工程的强度指标及耐久性的影响

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The current study examined the use of experimental and statistical approach to assess the influence of compaction energies on geotechnical behaviour of lateritic soil stabilized with up to 15 % oyster shell ash (OSA) by weight of the dry samples. The outcomes portray that the maximum dry densities (MDDs) of both untreated and treated soil samples decreased with increased compactive efforts whereas the optimum moisture content (OMCs) reduced. California bearing ratio, CBR (soaked and unsoaked) and unconfined compressive strength, UCS (7 and 28 days) values increased with higher compactive effort and OSA content. The statistical results indicated that OSA content, compactive energy (CE), plasticity index (PI) and percentage fine content (PF) have effect on the strength characteristics of lateritic soil. Generally, the study indicated that OSA content up to 9 % and higher compactive effort is adequate for enhancing the geotechnical behaviour of lateritic soil. However, rather than use OSA as stand-alone additive, it is recommended that cement or lime be used as admixture in OSA-lateritic soil so as to provide an effective hydraulically bound material for construction application.
机译:目前的研究检测了使用实验和统计方法来评估压实能量对胸椎岩石土壤岩土行为的影响,该方法稳定多达15%牡蛎壳灰(OSA)的干燥样品。结果描绘了未经处理和处理的土壤样品的最大干燥密度(MDDS)随着压缩努力的增加而降低,而最佳水分含量(OMCs)降低。加州轴承比率,CBR(浸泡和未烘烤)和无束缚的抗压强度,UCS(7和28天)值增加,具有更高的压缩努力和OSA含量。统计结果表明,OSA含量,特性能量(CE),可塑性指数(PI)和百分比细含量(PF)对眼光土壤的强度特性产生了影响。一般而言,该研究表明,OSA含量高达9%和更高的压力努力是充足的,以提高眼线土壤的岩土行为。然而,而不是使用OSA作为独立添加剂,建议使用水泥或石灰作为OSA-横向土壤的混合物,以便为施工应用提供有效的液压粘合材料。

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