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首页> 外文期刊>Arabian journal of geosciences >Experimental investigation of influence of clay in soil on interface friction between geotextile and clayey soil
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Experimental investigation of influence of clay in soil on interface friction between geotextile and clayey soil

机译:粘土在土壤界面摩擦对土壤裂缝影响的实验研究

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摘要

Although the soils are not always pure in nature and are found as a mixture of clay, silt, sand, or coarse soil grains, pure clay or sand soils are used in all studies related to this subject in the literature. In this study, the influence of clay inclusion in sand on the mechanical behavior of nonwoven geotextile interfaces over clayey and soil and interfacial stress is studied. A relatively well-graded angular sand and a clear smectite type clay were selected as granular material. In all clay-sand mixing percentages, shear box experiments were performed in both dry and water-saturated. When the clay ratio is high, the maximum interfacial stress is around 15 kPa, whereas in the case of the sand ratio is highest, the interfacial stress varies between 30 and 35 kPa. However, as sand grains increase, the failure mechanism becomes more brittle. Geotextile-reinforced samples were investigated while varying the amount of clay in sand layers of saturated and dry condition. Variation of the amount of clay in the sand at the shear box tests showed that the mobilized friction angle between mixed soil and geotextile has a key factor in evaluation of failure in shear strength of mixed soil.
机译:虽然土壤并不总是纯净的,并且被发现作为粘土,淤泥,沙子或粗土壤的混合物,纯粘土或沙子土壤用于该主题在文献中的所有研究中使用。在这项研究中,研究了粘土夹杂物对粘土和土壤和界面应力的非织造土工织物界面的力学行为的影响。选择相对良好分级的角砂和透明的蒙脱石型粘土作为粒状材料。在所有粘土混合百分比中,剪切箱实验在干燥和水饱和时进行。当粘土比为高时,最大界面应力约为15kPa,而在砂比最高的情况下,界面应力在30到35kPa之间变化。然而,由于砂粒增加,失效机构变得更加脆弱。研究了土工织物增强样品,同时改变饱和和干燥条件的砂层中的粘土量。剪切箱试验中砂中粘土的变化表明,混合土壤和土工织物之间的动员摩擦角具有评价混合土壤剪切强度失效的关键因素。

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