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Membrane penetration effects on shear strength and volume change of soil during triaxial test

机译:三轴试验期间土壤剪切强度和体积变化的膜渗透效应

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摘要

In a triaxial test of soil, a specimen in the cell is enclosed by a rubber membrane to separate soil particles from the surrounding water that represents the confining pressure. Upon increasing the confining pressure, this membrane penetrates the voids between the particles of the specimen and cause errors in triaxial test results, these errors lead to changes in shear strength and volume change measurements. Therefore, the results need to be corrected for membrane penetration. This paper emphasizes the importance of correcting triaxial test results for membrane penetration by presenting the influence of membrane penetration on shear strength and volume change measurements. It was concluded that the rubber membrane can produce apparent increase in volume change and shear strength either due to membrane penetration (when the test is at drained condition) or due to membrane compliance (when the test is at undrained condition).
机译:在土壤的三轴试验中,细胞中的样品由橡胶膜包围,以将土壤颗粒与表示狭窄压力的周围水分离。在增加狭窄压力时,该膜在样品的颗粒之间穿透空隙并导致三轴测试结果中的误差,这些误差导致剪切强度和体积变化测量的变化。因此,需要纠正膜渗透的结果。本文强调校正三轴试验结果,通过呈现膜穿透对剪切强度和体积变化测量的影响来校正膜渗透的重要性。得出结论是,由于膜渗透(当试验处于排出条件时)或由于膜依从性(当试验处于未润湿的条件时,试验时,橡胶膜可以产生显然增加的体积变化和剪切强度。

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