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Frictional behaviour of three critical geosynthetic interfaces

机译:三个关键土工合成界面的摩擦行为

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摘要

This paper's scope is the shear interaction mechanisms of three critical geosynthetic interfaces (geotextile/geomembrane; drainage geocomposite/geomembrane and soil/geomembrane) typically used for lined containment facilities such as landfills. A large direct shear machine was used to carry out 159 geosynthetic interface tests. The results showed strain softening behaviour, a very small dilatancy, 0.1-1 mm, and non-linear failure envelopes at normal stress range of 25-500 kPa. The three types of interfaces present the same main interaction mechanisms: interlocking and friction. For geotextile/geomembrane and drainage geocomposite/geomembrane interfaces, the higher the asperity height, the higher the interface shear strength. Whereas for soil/geomembrane interfaces, the higher the soil shear strength, the higher the interface shear strength. The drainage geocomposite/geomembrane interface showed the lowest friction angles, followed by the geotextile/geomembrane and the soil/geomembrane interfaces.
机译:本文的范围是通常用于衬砌围堵设施(如垃圾填埋场)的三个关键土工合成界面(土工织物/土工膜;排水土工复合材料/土工膜和土壤/土工膜)的剪切相互作用机制。大型直剪机用于进行159个土工合成材料界面测试。结果表明,在25-500 kPa的法向应力范围内,应变软化行为,很小的剪胀性,0.1-1 mm以及非线性破坏范围。三种类型的界面具有相同的主要交互机制:互锁和摩擦。对于土工织物/土工膜和排水土工复合材料/土工膜界面,粗糙高度越高,界面剪切强度越高。而对于土壤/土工膜界面,土壤抗剪强度越高,界面抗剪强度越高。排水土工复合材料/土工膜界面表现出最低的摩擦角,其次是土工织物/土工膜和土壤/土工膜界面。

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