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Resistance of Geosynthetics against the Isolated and Combined Effect of Mechanical Damage under Repeated Loading and Abrasion

机译:土工合成材料对反复载荷和磨损下机械损伤的孤立组合作用的抵抗力

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摘要

The behaviour of materials used for developing engineering structures should be properly foreseen during the design phase. Regarding geosynthetics, which are construction materials used in a wide range of engineering structures, the installation on site and the action of many degradation agents during service life may promote changes in their properties, endangering the structures in which they are applied. The evaluation of the damage suffered by geosynthetics, like installation damage or abrasion, is often carried out through laboratory tests. This work studied the behaviour of five geosynthetics (three geotextiles and two geogrids) after being individually and successively exposed to two degradation tests: mechanical damage under repeated loading and abrasion. The short-term mechanical and hydraulic behaviours of the geosynthetics were analysed by performing tensile tests and water permeability normal to the plane tests. Reduction factors were determined based on the changes occurred in the tensile strength of the geosynthetics. Findings showed that mechanical damage under repeated loading and abrasion tended to affect the mechanical and hydraulic properties of the geosynthetics and that the reduction factors calculated according to the traditional method may not be able to represent accurately the damage suffered by the materials when exposed successively to the degradation mechanisms.
机译:在设计阶段应适当预见用于开发工程结构的材料的行为。关于土工合成材料,土工合成材料是广泛用于工程结构中的建筑材料,在现场安装以及使用寿命期间许多降解剂的作用可能会促进其性能变化,从而危及使用它们的结构。土工合成材料遭受的损坏(如安装损坏或磨损)的评估通常通过实验室测试来进行。这项工作研究了五个土工合成材料(三个土工织物和两个土工格栅)在分别连续经受两个降解测试后的行为:反复加载和磨损下的机械损伤。通过进行拉伸试验和垂直于平面试验的透水性,分析了土工合成材料的短期力学和水力性能。根据土工合成材料抗张强度的变化确定还原系数。研究结果表明,在反复加载和磨损下的机械损伤倾向于影响土工合成材料的力学和水力性质,根据传统方法计算的折减系数可能不能准确地代表材料连续暴露在土中所遭受的破坏。退化机制。

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