Stachowiak Tomasz, Postawa Przemysław, Chmielarz Marcin, Grzesiczak Dominik
Department of Technology and Automation, Faculty of Mechanical Engineering and Computer Science, Częstochowa University of Technology, Al. Armii Krajowej 21, 42-201 Częstochowa, Poland.
Granulat-Bis Company, ulica Hallera 8A, 42-202 Częstochowa, Poland.
Materials (Basel). 2024 Apr 10;17(8):1739. doi: 10.3390/ma17081739.
Polymer materials and their composites are one of the most frequently used materials in the packaging and food industries. This applies to both disposable and reusable packaging, layered films with barrier properties, as well as densely overprinted polymer films and metallized food wrap films. According to statistical data from Plastics Europe, approximately 40% of processed thermoplastics are used to produce packaging, including single- and multi-layer film packaging. Growing requirements and new EU directives require the use of recycled materials in new products, which is not easy because the properties of recyclates may differ significantly from those of the primary materials with which the former are mixed. This work attempts to analyze the properties of the primary material used to produce a film using the casting method in comparison with the industrial recyclate obtained by the processing of film made of the primary material and then overprinted and metallized. The process of obtaining re-granulates and preparing test samples was presented, and the mechanical, structural, and thermal properties of the tested materials were compared. The conducted research and the obtained results demonstrated the advisability of conducting advanced mechanical recycling, which leads to obtaining re-granulates with repeatable processing properties and thermal and mechanical properties comparable to the original material despite the impurities they contain.
聚合物材料及其复合材料是包装和食品行业中使用最频繁的材料之一。这适用于一次性和可重复使用的包装、具有阻隔性能的层状薄膜,以及高密度印刷的聚合物薄膜和金属化食品包装薄膜。根据欧洲塑料协会的统计数据,约40%的加工热塑性塑料用于生产包装,包括单层和多层薄膜包装。不断增长的要求和新的欧盟指令要求在新产品中使用回收材料,但这并不容易,因为回收物的性能可能与与之混合的原始材料有显著差异。这项工作试图比较用流延法生产薄膜所用原始材料的性能与通过对由原始材料制成、然后进行印刷和金属化处理的薄膜进行加工而获得的工业回收物的性能。介绍了获得再生粒料和制备测试样品的过程,并比较了测试材料的机械、结构和热性能。所进行的研究和获得的结果表明进行先进机械回收是可取的,尽管再生粒料含有杂质,但仍能获得具有可重复加工性能以及与原始材料相当的热性能和机械性能的再生粒料。