范德瓦尔斯力
饱和(图论)
极限抗拉强度
岩土工程
高岭石
土壤水分
多孔性
材料科学
粒径
剪切(地质)
毛细管作用
复合材料
刚度
矿物学
地质学
化学
土壤科学
冶金
分子
有机化学
物理化学
数学
组合数学
作者
Lee Jeong-Ki,Dante Fratta,Idil Deniz Akin
标识
DOI:10.1139/cgj-2021-0033
摘要
We developed an experimental program to monitor how interparticle forces control the mechanical behavior of fine-grained soils when saturation changes from the tightly adsorbed regime to saturation. The testing program uses stiffness (i.e., S-wave velocity) and strength (i.e., Brazilian tensile strength) tests on kaolinite, silica flour, and diatomaceous earth soil samples at very low confining stresses (<5 kPa). Three fine-grained soils yield a range of different properties, including particle size, specific surface area, negative charge density, and internal or external particle porosity. Results show that shear stiffness and tensile strength follow similar trends, emphasizing that the same interparticle forces control the mechanical responses. In particular, the interpretation of S-wave velocity measurements shows three different behavior ranges: a van der Waals attraction range, a capillary-dominated interparticle forces range, and the continuous decrease in the capillary forces from the saturation at the air-entry pressure until full saturation. We show that the interparticle forces respond to a complex function of water content, particle size, particle separations, surface charge density, and the presence of internal particle porosity.
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