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同时改性与原生和消费后聚丙烯加工及应用相关的性能。

Simultaneous Modification of Properties Relevant to the Processing and Application of Virgin and Post-Consumer Polypropylene.

作者信息

Traxler Ines, Kaineder Hannes, Fischer Joerg

机构信息

Competence Center CHASE GmbH, Altenberger Strasse 69, 4040 Linz, Austria.

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

出版信息

Polymers (Basel). 2023 Mar 30;15(7):1717. doi: 10.3390/polym15071717.

Abstract

Post-consumer recyclates often have a property profile that results from mixing a variety of products, which are made from different materials, produced by different processing methods, and coming from applications with different lifetimes. This usually leads to a mixture of all these material properties in the recycling process. In contrast, virgin materials are specifically designed for applications and thus offer all the necessary properties for the intended products. In order to be able to use recycled materials for specific and demanding applications, not only the viscosity, which is important for processing and often varies greatly with recyclates, but also the mechanical properties, particularly the tensile modulus and impact strength, must be adjusted. For this purpose, various virgin materials of polypropylene homopolymers, random copolymers, and block copolymers with different flowabilities were mixed in different proportions and their properties were determined. The flowability of homopolymers and random copolymers in the blend behaved very similarly, while block copolymers exhibited a different behavior in some cases. By incorporating homopolymers into blends, the stiffness of the resulting material blend can be very well adjusted. The addition of random copolymers can increase strain at break, and the addition of block copolymers results in a significant increase in impact strength. In numbers, the maximum adjustment range for tensile modulus, yield stress, strain at break, and impact strength are 880 MPa, 14 MPa, 185%, and 6.9 kJ/m, respectively. While a good and reliable prediction of property profile is possible for polymer blends with different virgin materials, the resulting material properties for polymer blends of virgin and recycled materials are also influenced by impurities. In this work, however, a good prediction was also achieved for recyclate blends.

摘要

消费后回收物通常具有因混合多种产品而产生的性能特征,这些产品由不同材料制成,采用不同加工方法生产,且来自具有不同使用寿命的应用场景。这通常会导致在回收过程中这些材料性能相互混合。相比之下,原生材料是专门为特定应用设计的,因此能为预期产品提供所有必要性能。为了能够将回收材料用于特定且要求苛刻的应用,不仅要调整对加工很重要且常常因回收物而有很大变化的粘度,还必须调整机械性能,特别是拉伸模量和冲击强度。为此,将具有不同流动性的聚丙烯均聚物、无规共聚物和嵌段共聚物等各种原生材料按不同比例混合,并测定其性能。共混物中均聚物和无规共聚物的流动性表现非常相似,而嵌段共聚物在某些情况下表现出不同的行为。通过将均聚物加入共混物中,可以很好地调整所得材料共混物的硬度。加入无规共聚物可增加断裂伸长率,加入嵌段共聚物则会使冲击强度显著提高。具体数值方面,拉伸模量、屈服应力、断裂伸长率和冲击强度的最大调整范围分别为880兆帕、14兆帕、185%和6.9千焦/平方米。虽然对于由不同原生材料组成的聚合物共混物,有可能对其性能特征进行良好且可靠的预测,但原生材料与回收材料的聚合物共混物的最终材料性能也会受到杂质的影响。然而,在这项工作中,对于回收物共混物也实现了良好的预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f27/10097265/4f9ed1636c7a/polymers-15-01717-g001.jpg

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