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Static Method to Determine Compaction Characteristics of Fine-Grained Soils

机译:确定细粒土压实特性的静态方法

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Engineering projects such as roads, earthen dams, embankments, and trench backfills require soil compacted at higher dry unit weight. In a majority of geotechnical projects, compaction of soils is involved with increasing strength and decreasing compressibility and permeability. The Proctor compaction test forms one of the most popular and important tests in geotechnical engineering practice. The moisture content-dry unit weight relationship of the soil obtained from the standard Proctor test forms the basis for specification and field compaction control. Standard Proctor test, also known as the dynamic compaction test requires considerable time and effort and has few imperfections. This study examined the possibility of determining the equivalent static pressure to the standard Proctor test to obtain the optimum moisture content, OMC, and maximum dry unit weight, of fine-grained soils. For this, a static compaction pressure test was devised in the Proctor mold itself to statically compact the soil at different water contents. The equivalent static pressure so determined will simplify the compaction procedure and will also result in considerable saving of time, money, and effort, especially so when dealing with highway and earth embankment projects.
机译:道路,土坝,路堤和沟渠回填等工程项目需要以较高的干燥单位重量压实土壤。在大多数岩土工程项目中,土壤的压实涉及强度的增加以及压缩性和渗透性的降低。 Proctor压实测试是岩土工程实践中最受欢迎和最重要的测试之一。从标准的Proctor试验获得的土壤的水分含量与干燥单位重量的关系构成了规范和现场压实控制的基础。标准Proctor测试,也称为动态压实测试,需要大量的时间和精力,并且几乎没有缺陷。这项研究检验了确定与标准Proctor试验等效的静压以获得细颗粒土壤的最佳水分含量,OMC和最大干重的可能性。为此,在Proctor模具中进行了静态压实压力测试,以静态压实不同含水量的土壤。这样确定的等效静压将简化压实过程,并且还可以节省大量时间,金钱和精力,尤其是在处理公路和土堤工程时。

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