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首页> 外文期刊>Geotextiles and Geomembranes >Role of soil inherent anisotropy in peak friction and maximum dilation angles of four sand-geosynthetic interfaces
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Role of soil inherent anisotropy in peak friction and maximum dilation angles of four sand-geosynthetic interfaces

机译:土体固有各向异性在四个砂土-土工合成材料界面的峰值摩擦和最大膨胀角中的作用

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Using a modified direct shear apparatus, an extensive experimental investigation is conducted into the influence of the inherent anisotropy of sand on the mobilization of the peak and critical state friction angles as well as the maximum dilation angle of the interfaces between an inherently anisotropic crushed sand and two woven geotextiles, one nonwoven geotextile, and one geomembrane. Experimental findings confirm that both peak and maximum dilation angles of sand-geosynthetic interfaces are affected from soil inherent anisotropy depending on the bedding plane inclination with respect to the shear plane. However, a unique critical state (residual) friction angle is attained for each interface type irrespective of the bedding plane inclination angle. Compiling results of a total of 141 tests, it is shown that a unique rule describes stress-dilation relationship of four different dense crushed sand-geosynthetic interfaces. The experimental data indicate that the phi(p) vs. theta and Psi(max) vs. theta curves are symmetrical with respect to theta = 90 degrees for the sand-woven geotextile and sand-geomembrane interfaces. Finally, it is shown that a constitutive equation by Pietruszczak and Mroz (2001) can predict the variation of phi(p) with theta for the sand-woven geotextile and sand-geomembrane interfaces.
机译:使用改进的直接剪切设备,进行了广泛的实验研究,以研究砂的固有各向异性对峰和临界状态摩擦角的动员以及固有的各向异性碎砂与土之间的界面的最大膨胀角的影响。两种编织土工布,一种非编织土工布和一种土工膜。实验结果证实,取决于层理平面相对于剪切面的倾斜度,砂土工合成材料界面的最大扩张角和最大扩张角都受到土壤固有各向异性的影响。但是,对于每种界面类型,都获得了唯一的临界状态(残余)摩擦角,而与垫层倾斜角无关。总共141个测试的结果汇编表明,一个独特的规则描述了四个不同的致密碎砂-土工合成材料界面的应力-膨胀关系。实验数据表明,砂编织土工布和砂土工膜界面的phi(p)与theta曲线和Psi(max)与theta曲线相对于theta = 90度对称。最后,证明了Pietruszczak和Mroz(2001)的本构方程可以预测砂织土工布和砂土工膜界面的phi(p)随θ的变化。

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