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Characterization of degradation on gamma-irradiated recycled polyethylene blends by scanning electron microscopy

机译:通过扫描电子显微镜表征γ辐照的再生聚乙烯共混物的降解

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摘要

The recycling of polymer blends has gained increasing attention in the world due to economic and environmental considerations. The exposure of recycled polyethylene blends to low doses of ~60Co gamma radiation improves their mechanical properties due to crosslinking. It is agreed that gamma irradiation in air may cause degradation with oxidation occurring near the surfaces. Usually degradation means worsened properties. Then, it is important to estimate the extent of oxidation depth under those conditions. Samples of recycled polyethylene blends after exposure to gamma rays were examined by scanning electron microscopy (SEM). Permanganic reagent, developed for revealing semicrystaline morphologies in polyolefins under the electron microscope, has been used to monitor the superficial degradation. A detailed characterization of the material behavior has been made by mechanical and physico-chemical testing. The data presented in this article for recycled polyethylene blend after exposure to gamma rays in the air provide evidence of that the increase of radiation dose promotes a higher surface degradation. The effect of gamma radiation is clearly seen in the specimens irradiated with different doses and may be related to the changes in the mechanical properties.
机译:出于经济和环境方面的考虑,聚合物共混物的回收利用在全世界引起了越来越多的关注。由于交联,使回收的聚乙烯共混物暴露于低剂量的〜60Coγ射线下可改善其机械性能。公认的是,空气中的γ辐射会导致降解,并在表面附近发生氧化。通常,降解意味着性能变差。然后,重要的是估算在这些条件下的氧化深度。暴露于伽马射线后的回收聚乙烯共混物样品通过扫描电子显微镜(SEM)进行了检查。在电子显微镜下开发用于揭示聚烯烃中半结晶形态的高锰试剂已​​用于监测表面降解。通过机械和物理化学测试对材料的行为进行了详细的表征。本文中提供的有关再生聚乙烯共混物的数据在暴露于空气中的伽玛射线后提供了证据,表明辐射剂量的增加会促进较高的表面降解。在不同剂量照射的样品中可以清楚地看到γ辐射的影响,并且可能与机械性能的变化有关。

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