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The estimation of parameter compaction values for pavement subgrade stabilized with lime

机译:用石灰稳定路面路面参数压实值的估计

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The type of soil material, field control, maintenance and availability of funds are several factors that must be considered in compaction of the pavement subgrade. In determining the compaction parameters in laboratory desperately requires considerable materials, time and funds, and reliable laboratory operators. If the result of soil classification values can be used to estimate the compaction parameters of a subgrade material, so it would save time, energy, materials and cost on the execution of this work. This is also a clarification (cross check) of the work that has been done by technicians in the laboratory. The study aims to estimate the compaction parameter values ie. maximum dry unit weight (γd_(max)) and optimum water content (W_(opt)) of the soil subgrade that stabilized with lime. The tests that conducted in the laboratory of soil mechanics were to determine the index properties (Fines and Liquid Limit/LL) and Standard Compaction Test. Soil samples that have Plasticity Index (PI) >10% were made with additional 3% lime for 30 samples. By using the Goswami equation, the compaction parameter values can be estimated by equation γ_(d max)~# = -0,1686 Log G + 1,8434 and W_(opt)~# = 2,9178 log G + 17,086. From the validation calculation, there was a significant positive correlation between the compaction parameter values laboratory and the compaction parameter values estimated, with a 95% confidence interval as a strong relationship.
机译:资金的土壤材料,现场控制,维护和可用性是几个因素,必须考虑在路面路面压实中。在确定实验室中的压实参数时,迫切需要相当大的材料,时间和资金,以及可靠的实验室运营商。如果土壤分类值的结果可用于估计路基材料的压实参数,因此它将节省时间,能量,材料和成本对此工作的执行。这也是技术人员在实验室完成的工作的澄清(Cross Check)。该研究旨在估计压实参数值IE。用石灰稳定的土壤路基的最大干燥单位重量(γd_(最大))和最佳含水量(W_(OPT))。在土壤力学实验室进行的测试是确定指标性质(罚款和液体限制/ LL)和标准压实试验。具有可塑性指数(PI)> 10%的土壤样品用另外3%石灰制成30个样品。通过使用GOSWAMI方程,可以通过等式γ_(d max)〜#= -0,1686 log g + 1,8434和w_(opt)〜#= 2,9178 log g + 17,086来估计压缩参数值。从验证计算中,压实参数值实验室和估计的压缩参数值之间存在显着的正相关性,具有95%的置信区间作为强有力的关系。

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