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Experimental Studies on Interfacial Shear Characteristics between Polypropylene Woven Fabrics

机译:聚丙烯机织织物界面剪切特性的实验研究

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摘要

Geotextile tubes are used in dam construction because fine tailings are difficult to use. The shear characteristics of geotextile tubes during dam operation are closely related to those of the materials used to construct the tubes. Pull-out tests can accurately reflect the interfacial shear characteristics between geosynthetics in practice, so pull-out tests were carried out for different interfacial types of polypropylene woven fabrics under dry and wet states. The effects of the type of interface and dry-wet states on the interfacial shear characteristics were investigated, and the impact mechanisms were also discussed. The results indicated that P-type interfaces (the warp yarn on the interface is parallel to the pulling direction) tended to harden. However, PTP-type (the warp yarn on the interface is perpendicular to each other) and T-type (the weft yarn on the interface is parallel to the pulling direction) interfaces softened first and then tended to plateau after reaching peak shear stress, and softening became more obvious at higher normal stresses. The displacement corresponding to peak shear stress (referred to as “peak displacement” in this paper) of interfaces was positively correlated with the normal stress, and the wet state reduced the interfacial peak displacement. For different types of interfaces, the peak displacement of the T-type interface was the largest, followed by PTP-type and P-type. Interfacial shear characteristics conformed to Mohr–Coulomb strength theory and, compared with quasi-cohesion values ranging from 1.334 to 3.606 kPa, the quasi-friction angle significantly contributed to the interfacial shear strength. The quasi-friction angle of the interface was composed of a sliding friction angle and an occlusal friction angle. The shear strength of the interface was more sensitive to the interface types than whether they were in the dry or wet state. For different types of interfaces and dry-wet states, the change in the interfacial shear strength is respectively affected by the occlusal friction angle and the sliding friction angle on the interface.
机译:由于难以使用细尾矿,土工布管用于大坝建设。大坝运行期间土工布管的剪切特性与用于构造这些管的材料的剪切特性密切相关。拔出试验可以在实际中准确反映土工合成材料之间的界面剪切特性,因此对干,湿状态下不同界面类型的聚丙烯机织织物进行了拔出试验。研究了界面类型和干湿状态对界面剪切特性的影响,并探讨了其影响机理。结果表明,P型界面(界面上的经纱与牵拉方向平行)趋于硬化。但是,PTP型(界面上的经纱彼此垂直)和T型(界面上的纬纱平行于牵拉方向)界面先软化,然后在达到峰值剪切应力后趋于平稳,在较高的正应力下软化变得更加明显。界面的峰值剪切应力所对应的位移(本文称为“峰值位移”)与法向应力呈正相关,而湿态减小了界面的峰值位移。对于不同类型的接口,T型接口的峰值位移最大,其次是PTP型和P型。界面剪切特性符合Mohr-Coulomb强度理论,并且与介于1.334至3.606 kPa的准内聚力值相比,准摩擦角显着影响了界面剪切强度。界面的准摩擦角由滑动摩擦角和咬合摩擦角组成。界面的剪切强度比界面的干态或湿态对界面类型更为敏感。对于不同类型的界面和干湿状态,界面剪切强度的变化分别受到界面上的咬合摩擦角和滑动摩擦角的影响。

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