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通过一种新型环境应力开裂方法评估用于吹塑应用的市售聚乙烯回收料。

Assessment of Commercially Available Polyethylene Recyclates for Blow Molding Applications by a Novel Environmental Stress Cracking Method.

作者信息

Freudenthaler Paul J, Fischer Joerg, Lang Reinhold W

机构信息

Institute of Polymeric Materials and Testing, Johannes Kepler University Linz, Altenberger Straße 69, 4040 Linz, Austria.

出版信息

Polymers (Basel). 2022 Dec 22;15(1):46. doi: 10.3390/polym15010046.

Abstract

The transition to a circular economy has a major impact on waste management and the reuse of materials. New mandatory recycling targets for plastics will lead to a high availability of recyclates. For these recyclates, useful applications need to be found. One potential application for recyclates is blow molding bottles as packaging for non-food contents. This study investigates commercially available post-consumer high-density polyethylene recyclates together with virgin blow molding grades in terms of their short-term mechanical properties and environmental stress cracking resistance. While the short-term mechanical properties showed only slightly lower performance than the tested virgin grades, the overall environmental stress cracking failure times of the recyclates were much lower compared to virgin materials, even though the crack-growth kinetics could be similar. Although neither the tensile nor the notched impact strength results of the two polyethylene recyclates revealed large differences, the stress intensity-factor-dependent crack-growth rates of both materials were significantly different.

摘要

向循环经济的转变对废物管理和材料再利用产生重大影响。新的塑料强制性回收目标将导致大量可回收物的供应。对于这些可回收物,需要找到有用的应用。可回收物的一个潜在应用是吹塑瓶作为非食品内容物的包装。本研究调查了市售后消费高密度聚乙烯可回收物以及原生吹塑级材料的短期机械性能和耐环境应力开裂性能。虽然短期机械性能仅比测试的原生级材料略低,但与原生材料相比,可回收物的整体环境应力开裂失效时间要低得多,尽管裂纹扩展动力学可能相似。尽管两种聚乙烯可回收物的拉伸强度和缺口冲击强度结果均未显示出较大差异,但两种材料的应力强度因子相关裂纹扩展速率却存在显著差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d20b/9823600/aaec2d43e2f4/polymers-15-00046-g001.jpg

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