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Shear strength characteristics of interlocked EPS-block geofoam-sand interface

机译:互锁eps-块土工橡胶砂界面的剪切强度特性

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摘要

Translation of entire geofoam embankment at the bottom of geofoam block assemblage and bedding sand is a possible internal failure mode due to unbalanced hydrostatic forces. In addition, available shearing resistance along the bottom of geofoam block assemblage and bedding sand is an important design issue for internal seismic stability analysis. This study has focused on the methods to increase the interface shear resistance along the traditional flat surface geofoam block and bedding sand interface. In addition to traditional flat surface geofoam-sand interface, the effect of four different interlock configurations composed of geofoam blocks with one- and four-triangular and one- and foursquare ledges were quantified by using direct shear tests. Two different densities (EPS19 and EPS29) and two different types of sand (Ottawa sand and Adapazari sand) were used. Therefore, the effects of geofoam stiffness, interface geometry, grain size and particle shape of the bedding sand on the interface stress-strain behavior was quantified. Manufacturing ledges along the traditional geofoam surface significantly improved the geofoam block-sand interface shear resistance. In addition, interrupting the failure plane with ledges changed the interface shear mechanism of the traditional flat surface geofoam block-bedding sand interface from purely frictional to frictional-cohesive behavior.
机译:由于不平衡的静水力,整个Geofoam块组件和床上用品的整个Geofoam堤防的翻译是一种可能的内部故障模式。此外,沿着地理污水块组件和床上用品砂底的可用剪切阻力是内部地震稳定性分析的重要设计问题。本研究专注于沿着传统的平坦表面地理覆盖块和床上用品砂界面增加界面剪切电阻的方法。除了传统的平坦表面地理外涂层界面之外,通过使用直接剪切测试量化了由带有一个和四个三角形和一个和四个横向架的地理块块组成的四种不同的互锁配置的效果。使用了两种不同的密度(EPS19和EPS29)和两种不同类型的沙子(渥太华沙子和赤唑砂砂)。因此,量化了地理泡沫刚度,界面几何形状,晶粒尺寸和颗粒形状对界面应力 - 应变行为的影响。沿着传统地理污染表面的制造架显着改善了地理块块砂界面剪切电阻。此外,中断用凸缘的故障平面改变了传统平面地理块块底层垫界面的界面剪切机构,从纯粹摩擦到摩擦粘性行为。

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