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Soil structure changes during drained and undrained triaxial shear of a clayey soil

机译:黏性土壤排水和不排水三轴剪切过程中的土壤结构变化

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摘要

Orientations during drained and undrained triaxial shear tests on an artificially made clayey soil were studied. The results show that the orientation pattern before shearing is nearly random, although there may be some degree of preferred orientation caused by the overburden pressure. Becoming higher towards the failure plane, the degree of preferred orientation sharply increases in both tests as the compression increases until failure. It was discovered that in the consolidated undrained tests, failure occurs at higher levels of strain than previously believed, while in the consolidated drained tests, failure occurs at much lower levels of strain than previously believed. The results indicate the formation of a wider deformation zone towards and at failure in the drained tests. This is probably because particles in the drained tests have enough time to respond to the applied shear stress and change their orientation accordingly. This may explain the formation of wider deformation zones along creeping (aseismic) faults and narrow zones along seismic faults whose mechanisms are analogous to the drained and undrained tests, respectively.
机译:研究了人造粘土在排水和不排水三轴剪切试验中的方向。结果表明,尽管上覆压力可能导致一定程度的优先取向,但剪切前的取向模式几乎是随机的。随着朝向压缩平面的增大,在两次测试中,首选方向的程度都会随着压缩率的增加而急剧增加,直到破坏为止。已经发现,在固结排水试验中,失效发生在比以前认为更高的应变水平,而在固结排水试验中,失效发生在比以前认为更低的应变水平。结果表明,在排水试验中和破裂时,形成了一个较宽的变形区。这可能是因为排水试验中的颗粒有足够的时间响应所施加的剪切应力并相应地改变其方向。这可以解释沿蠕变(地震)断层形成较宽的变形带和沿地震断层形成窄带的形成,其机理分别类似于排水试验和不排水试验。

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