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Effect Of Shear Deformation On Microfabric Of Clay Using Xrd Technique

机译:Xrd技术剪切变形对黏土微结构的影响

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The present paper deals with the impact of shear deformation on the geometric arrangement of particles within the soil specimen, which is termed as the microfabric of soil. A series of compression and extension lubricated end triaxial tests are performed on cylindrical specimens of Kaolinite clay with two extreme microfabrics; dispersed and flocculated, which are obtained using slurry consolidation technique. Flocculated microfabric has random orientation of particles within the soil mass having face-to-edge particle contacts; however, dispersed microfabric has parallel orientation of particles containing face-to-face particle contacts. When the specimen is subjected to large stress levels during its shear deformation, the particle orientation and the geometric arrangement within the soil specimen gets affected due to the force acting on the clay platelets. The variation in microfabric of soil before and after shear deformation process is evaluated by obtaining X-ray diffraction patterns of the clay specimen at three different locations using standard X-ray diffractometer. The discussion includes an analysis of the orientation of soil particles located at shear banding zones of the clay specimens, which mayrnbe useful for understanding the strain localization development in clays.
机译:本文探讨了剪切变形对土壤标本中颗粒的几何排列的影响,该标本被称为土壤的微结构。对高岭石粘土的圆柱形试样和两个极端微结构进行了一系列的压缩和拉伸润滑末端三轴试验。分散和絮凝,这是通过浆液固结技术获得的。絮凝的微织物在土壤团中具有面对面的颗粒接触的颗粒具有随机取向;然而,分散的微织物具有包含面对面的颗粒接触的颗粒的平行取向。当试样在剪切变形过程中承受较大的应力水平时,由于作用在粘土片上的力,土壤试样内的颗粒取向和几何排列会受到影响。通过使用标准X射线衍射仪获得粘土样品在三个不同位置的X射线衍射图来评估剪切变形过程之前和之后土壤微结构的变化。讨论包括对位于黏土样品剪切带处的土壤颗粒取向的分析,这可能有助于理解黏土的应变局部化发展。

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