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Evaluation of the Resistance of a Polypropylene Geotextile Against Ultraviolet Radiation

机译:评价聚丙烯土工织物对紫外线辐射的抗性

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摘要

The exposure to solar radiation (mainly due to the action of ultraviolet radiation) is one of the main causes for the premature failure of many polymeric materials, including the geotextiles. In this work, a nonwoven polypropylene geotextile (stabilized with a known amount of a hindered amine light stabilizer) was exposed to ultraviolet-aging tests, both in the laboratory (accelerated conditions) and outdoors (natural conditions). The damage occurred in the geotextile (caused by the ultraviolet-aging tests) was evaluated quantitatively (by monitoring changes in its mass per unit area, thickness, and tensile properties) and qualitatively (by scanning electron microscopy). The results, among other findings, showed that: (1) the ultraviolet-aging tests (both in the laboratory and outdoors) induced relevant damage in the polypropylene fibers of the geotextile (transverse cracks), leading to the deterioration of its tensile behavior, (2) the amount of degradation increased with the increase of the ultraviolet radiant energy, (3) the laboratory tests caused a faster deterioration of the polypropylene fibers than the outdoor tests, and (4) the degradation found by scanning electron microscopy in the polypropylene fibers correlated well with the deterioration occurred in the tensile behavior of the geotextile.
机译:暴露于太阳辐射(主要是由于紫外线辐射的作用)是许多聚合物材料过早失效的主要原因之一,包括土工织物。在这项工作中,非织造聚丙烯土工织物(用已知量的受阻胺光稳定剂稳定)暴露于实验室(加速条件)和户外(天然条件)中的紫外线试验。定量评价土工织物(由紫外 - 老化试验引起的损伤)(通过监测其单位面积,厚度和拉伸性能的质量的变化)和定性(通过扫描电子显微镜)。结果在其他研究结果中,结果表明:(1)紫外线试验(在实验室和户外)诱导土工织物(横向裂缝)的聚丙烯纤维中的相关损伤,导致其拉伸行为的恶化, (2)随着紫外线辐射能量的增加而增加,(3)实验室测试导致聚丙烯纤维的速度比室外试验更快,(4)通过扫描电子显微镜在聚丙烯中发现的降解纤维在土工织物的拉伸行为中发生劣化,劣化。

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