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Long-term internal shear strength of a reinforced GCL based on shear creep rupture tests

机译:基于剪切蠕变断裂试验的增强型GCL的长期内部剪切强度

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Clay geosynthetic barriers (GBR-C) - a synonym for geosynthetic clay liners (GCL) - used on steep slopes, e.g. landfill capping systems, have to withstand permanent shear forces over the long-term. Thermoplastic materials deform under static load. Creep and chemical ageing processes (e.g. oxidation) also influence the strength of the synthetic fibres over the long-term. The lifetime of these geo-synthetics (GSY) is a very important issue as GBR-Cs have to demonstrate their long-term durability for more than 100 years in cases such as e.g. landfill capping systems in Germany. The long-term shear strength will be modelled by applying shear stress for long durations at elevated temperature (i.e. to accelerate ageing). In laboratory tests running up to 2 years on a stitch-bonded GBR-C in deionised (DI) water, specimens experienced internal rupture (i.e. rupture of fibres) at higher shear stress. Results showed the times to shear failure directly depend on the applied shear stress. Using the extrapolation of the regression line of times to shear creep rupture together with a lifetime prediction the applicable shear stress was found to 28 kPa for a minimum of 100 years under a normal stress of 50 kPa at a field temperature of 30℃. Short-term tests cannot give the answer for any long-term behaviour of GBR-Cs. There is always the need for shear creep rupture tests. This new method determines the long-term shear strength of GBR-Cs for any lifetime.
机译:粘土土工合成材料屏障(GBR-C)-土工合成材料粘土衬里(GCL)的同义词-用于陡坡上垃圾填埋场封盖系统必须长期承受永久剪切力。热塑性材料在静载荷下会变形。蠕变和化学老化过程(例如氧化)也会长期影响合成纤维的强度。这些土工合成材料(GSY)的使用寿命是一个非常重要的问题,因为GBR-C必须在100多年的使用寿命中证明其长期耐用性超过100年。德国的垃圾填埋场封顶系统。长期剪切强度将通过在高温下长时间施加剪切应力(即加速老化)来建模。在去离子(DI)水中的缝编GBR-C上进行长达2年的实验室测试中,样品在较高的剪切应力下经历了内部破裂(即纤维破裂)。结果表明,剪切破坏的时间直接取决于所施加的剪切应力。使用时间回归线外推剪切蠕变断裂和寿命预测,在30℃的现场温度下,在50 kPa的正应力下,至少100年的适用剪切应力为28 kPa。短期测试无法回答GBR-C的任何长期行为。始终需要进行剪切蠕变断裂测试。这种新方法确定了GBR-Cs在任何使用寿命内的长期剪切强度。

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