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Dynamic Shear Strength of GMX/GCL Composite Liner for Monotonic Loading

机译:GMX / GCL复合衬里单调加载的动态剪切强度

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摘要

This paper presents an experimental investigation of the dynamic shear strength of a composite liner consisting of a high-density polyethylene (HDPE) textured geomembrane (GMX) over a hydrated nonwovenonwoven needle-punched geosynthetic clay liner (GCL) for monotonic (i.e., single direction) loading conditions. Displacement-controlled shear tests were conducted using a large direct shear machine for five normal stress levels ranging from 13 to 2071 kPa and five shear displacement rates ranging from 0.1 to 30,000 mm/min. GCL internal failures occurred at high normal stress and low displacement rate. As normal stress decreased or displacement rate increased, failure mode transitioned to the GMX/GCL interface. Peak strength envelopes are slightly nonlinear (concave-down) and show dependence on displacement rate at higher normal stress. Large-displacement strength envelopes show greater dependence on displacement rate at higher normal stress due to the effect of changing failure mode. The standard displacement rate for static shear tests of GMX/GCL composite liners (1 mm/min) yielded conservative values of peak shear strength but unconservative values of large-displacement shear strength for some normal stress conditions. The GMX/GCL composite liner experienced significant post-peak strength reduction for all test conditions.
机译:本文提出了由高密度聚乙烯(HDPE)织构土工膜(GMX)组成的复合衬里在水合非织造/非织造针刺土工合成材料粘土衬里(GCL)上用于单调性的动态剪切强度的实验研究(即,单向)加载条件。使用大型直接剪切机进行位移控制的剪切试验,测试的五个法向应力水平范围为13至2071 kPa,五个剪切位移速率的范围为0.1至30,000 mm / min。 GCL内部故障发生在高法向应力和低位移速率下。随着法向应力减小或位移速率增大,失效模式过渡到GMX / GCL接口。峰值强度包络线是稍微非线性的(凹陷),并且在较高的法向应力下显示出对位移速率的依赖性。由于改变失效模式的影响,大位移强度包络线在较高的法向应力下显示出对位移速率的更大依赖性。 GMX / GCL复合衬里的静态剪切试验的标准位移速率(1毫米/分钟)产生了峰值剪切强度的保守值,但在某些法向应力条件下却产生了大位移剪切强度的非保守值。在所有测试条件下,GMX / GCL复合衬里的峰值强度均显着降低。

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