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Degradation of post-consumer polypropylene materials exposed to simulated recycling―mechanical properties

机译:暴露于模拟回收中的消费后聚丙烯材料的降解-机械性能

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摘要

Two post-consumer polypropylene (PP) materials have been examined and compared using a simulated recycling test procedure consisting of repeated cycles of alternating extrusion and accelerated thermo-oxidative ageing. The materials were also subjected to repeated extrusion and thermo-oxidative ageing separately. The materials were characterized by mechanical and chemical properties, such as elongation-at-break, oxidative induction temperature, carbonyl index and changes in molecular weight distributions. The different batches of recycled PP differed substantially in terms of durability and recycling potential. This illustrates one of the problems involved in handling recycled materials i.e. different batches and material streams may differ quite a lot. Interestingly, the elongation-at-break was significantly different for samples taken after ageing and extrusion, respectively. The elongation decreased upon each ageing step, and increased as a result of the subsequent extrusion. Furthermore, the combination of extrusion and ageing tended to degrade the materials faster compared to ageing or repeated extrusion performed separately.
机译:已使用模拟回收测试程序对两种消费后聚丙烯(PP)材料进行了检查和比较,该程序包括交替挤压和加速热氧化老化的重复循环。这些材料也分别经受重复挤压和热氧化老化。该材料具有机械和化学特性,例如断裂伸长率,氧化诱导温度,羰基指数和分子量分布变化。不同批次的回收PP在耐用性和回收潜力方面存在很大差异。这说明了处理回收材料所涉及的问题之一,即不同批次和材料流可能相差很大。有趣的是,老化和挤压后分别采集的样品的断裂伸长率显着不同。在每个时效步骤中,伸长率降低,并且由于随后的挤出而增加。此外,与时效或单独进行重复挤压相比,挤压和时效的结合往往会使材料降解得更快。

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