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A Study on Micro-Pore Characteristics of Clay Due to Freeze-Thaw and Compression by Mercury Intrusion Porosimetry

机译:汞侵入孔隙瘤冻土粘土微孔特性研究

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摘要

Accurate quantification of soil micro-pore is important for understanding compression deformation and thaw settlement of fine-grained soils, including clay. This study presents mercury intrusion porosimetry (MIP) data on the four types of soil samples before and after freeze-thaw and compression under four different cold-end temperatures. Undisturbed clay specimens were subject to one-directional freeze-thaw in a closed system under different freezing temperatures. The frozen-thawed specimens were divided into three layers and averaged along the height direction for a consolidation test. The mercury intrusion test data were analyzed, and three typical micro-pore parameters including (1) total pore volume, (2) median pore size, and (3) average pore size were selected to quantitatively describe the variation of soil micro-pores before and after freeze-thaw and consolidation. Close correlations were observed between the variation of micro-pore parameters and variation of compression index, pore ratio, water content, and density. This study demonstrates that compared with traditional test methods, MIP can be advantageous in revealing the internal micro-pore change of soil due to freeze-thaw and compression both quantitatively and nondestructively.
机译:准确定量土壤微孔对理解压缩变形和细化土壤的沉淀,包括粘土,是重要的。本研究介绍了在四种不同冷端温度下的冻融和压缩前后四种土壤样品上的汞入侵孔隙瘤(MIP)数据。未受干扰的粘土标本在不同的冷冻温度下在封闭系统中进行一方面的冻融。将冷冻的标本分成三层并沿高度方​​向平均用于固结试验。分析了汞入侵试验数据,并选择了三种典型的微孔参数,包括(1)总孔体积,(2)中值孔径和(3)平均孔径,以定量描述土壤微孔的变化在冻融和整合之后。在微孔参数的变异与压缩指数,孔径,含水量和密度的变化之间观察到密切相关性。本研究表明,与传统的测试方法相比,MIP可以有利于揭示由于冻融和定量和无损地压缩而导致的土壤的内部微孔变化。

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