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用于热成型包装应用的聚丙烯消费后回收物复合材料

Polypropylene Post-Consumer Recyclate Compounds for Thermoforming Packaging Applications.

作者信息

Freudenthaler Paul J, Fischer Joerg, Liu Yi, Lang Reinhold W

机构信息

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

Borealis Polyolefine GmbH, Innovation Headquarters, St. Peterstraße 25, 4021 Linz, Austria.

出版信息

Polymers (Basel). 2023 Jan 9;15(2):345. doi: 10.3390/polym15020345.

Abstract

Polypropylene (PP) plastic packaging waste consists of a variety of different plastic packaging products with a great span in rheological and mechanical behavior. Therefore, the resulting post-consumer recyclates usually show melt mass-flow rates (MFR) in the region of injection molding grades and intermediate mechanical properties. High-quality packaging applications demand a distinct property profile that is met by tailor-made PP grades and cannot be met by recyclates with intermediate performance. One such application with high market volume is high-stiffness thermoforming trays. The aim of this research was to blend intermediate-performance recyclates with a virgin PP grade to obtain compounds that fulfill the rheological and mechanical demands of this application. Three commercially available PP post-consumer recyclates were acquired and compounded with different blending ratios with a high stiffness, low MFR virgin PP grade. As the pure recyclates show different rheological properties, the blending ratios had to be adapted for each of them to fit into the MFR range of 2-4 g/10 min which is desirable for thermoforming applications. The resulting PP recyclate compounds show a distinct correlation of recyclate content with rheological and mechanical performance. However, the resulting property profile was directly dependent on the performance of the originally used recyclate. The best-performing recyclate could be used in a blending ratio of 65 m% recyclate content while adhering to both property limits, the MFR of 2-4 g/10 min and the lower bound tensile stiffness of 1500 MPa.

摘要

聚丙烯(PP)塑料包装废弃物由各种不同的塑料包装产品组成,其流变学和机械性能差异很大。因此,消费后的回收物通常显示出注塑级别的熔体质量流动速率(MFR)和中等机械性能。高质量的包装应用需要独特的性能 profile,这可以通过定制的PP等级来满足,而中等性能的回收物无法满足。高市场销量的此类应用之一是高刚度热成型托盘。本研究的目的是将中等性能的回收物与纯PP等级混合,以获得满足该应用流变学和机械要求的化合物。获取了三种市售的PP消费后回收物,并与具有高刚度、低MFR的纯PP等级以不同的混合比例进行混合。由于纯回收物显示出不同的流变性能,因此必须针对每种回收物调整混合比例,以使其符合热成型应用所需的2-4 g/10 min的MFR范围。所得的PP回收物化合物显示出回收物含量与流变学和机械性能之间的明显相关性。然而,所得的性能 profile 直接取决于原始使用的回收物的性能。性能最佳的回收物可以以65 m%的回收物含量混合比例使用,同时符合两个性能限制,即2-4 g/10 min的MFR和1500 MPa的下限拉伸刚度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdd4/9862954/9aaa24ff7760/polymers-15-00345-g001.jpg

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