首页> 外文会议>International symposium on deformation characteristics of geomaterials;IS-Seoul 2011 >Observations of the soil particle movement during direct shear tests on soil-geosynthetic interfaces
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Observations of the soil particle movement during direct shear tests on soil-geosynthetic interfaces

机译:土工合成材料界面直接剪切试验中土壤颗粒运动的观察

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The shear strength between soil-geosynthetic interface has been well studied by conducting large scale direct shear tests. However, the documents of the development of shear band and the interaction of soil particles and geosynthetics under direct shear mode are still limited. Consequently, a series direct shear testing program is conducted aimed at providing detail image records of the soil particles against geosynthetics during direct shear tests. The direct shear tests involved several soils and several geosynthetics (geogrid, geotextile, and geomembrane). The movement of soil particles in the shear box is observed through the transparent glass on one side of the direct shear box. During shear test, high resolution photo images of soil particles are taken. The results show that the soil particles between geogrid apertures interlock quite well. Therefore the shear band can extend from the shear surface to adjacent soil particles. The upward movement of soil particles is also consistent with the dilatant behavior recorded during shear test. However, the shear band width for soil-geotextile interface and soil-geomembrane interface is much smaller than the width for pure soil under direct shear mode. The shear behavior is simply the soil particles slide on the geosynthetics. Therefore the shear band is limited to the soil particles lying on planar geosynthetics. The test results support the general finding from the direct shear test results that the shear strength between soil and geogrid interface is similar to the shear strength of pure soil while the shear strength between soil and geotextile and geomembrane interface is smaller than the shear strength of pure soil.
机译:通过进行大规模直接剪切试验,已经很好地研究了土壤-土工合成材料界面之间的剪切强度。然而,在直接剪切模式下,剪切带的发展以及土壤颗粒与土工合成物相互作用的文献仍然很有限。因此,进行了一系列直接剪切测试程序,目的是在直接剪切测试期间针对土工合成材料提供土壤颗粒的详细图像记录。直接剪切试验涉及几种土壤和几种土工合成材料(土工织物,土工织物和土工膜)。通过直接剪切箱一侧的透明玻璃可以观察到土壤颗粒在剪切箱中的运动。在剪切测试过程中,拍摄了土壤颗粒的高分辨率照片图像。结果表明,土工格栅孔之间的土壤颗粒很好地互锁。因此,剪切带可以从剪切表面延伸到相邻的土壤颗粒。土壤颗粒的向上运动也与剪切试验期间记录的膨胀行为一致。然而,在直接剪切模式下,土-土工织物界面和土-土工膜界面的剪切带宽度要比纯土的宽度小得多。剪切行为仅仅是土壤颗粒在土工合成材料上滑动。因此,剪切带仅限于平面土工合成材料上的土壤颗粒。试验结果支持了直接剪切试验结果的一般结论,即土壤与土工格栅界面之间的剪切强度与纯土的剪切强度相似,而土工织物与土工膜界面之间的剪切强度小于纯土的剪切强度。泥。

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