Pietrosanto Arianna, Apicella Annalisa, Scarfato Paola, Incarnato Loredana, Di Maio Luciano
Department of Industrial Engineering, University of Salerno, Via Giovanni Paolo II 132, 84084 Fisciano, SA, Italy.
Polymers (Basel). 2022 Jul 6;14(14):2759. doi: 10.3390/polym14142759.
Heat-shrinkable films, largely made of polyolefins and widely employed in the packaging sector as collation or barrier films, due to their short service life, are held responsible for high environmental impact. One possible strategy for reduction in their carbon footprint can be the use of biodegradable polymers. Thus, this work aimed to develop novel, heat-shrinkable, fully biodegradable films for green packaging applications and to analyze their functional performance. Films were obtained from blends of amorphous polylactic acid (PLA) and poly(butylene-adipate-co-terephthalate) (PBAT) at different mass ratios and compatibilized with a chain extender. They were produced by means of a lab-scale film blowing extrusion apparatus and characterized in terms of physical-mechanical properties and shrinkability. The influence of the processing parameters during the extrusion blowing process on the films' behavior was investigated, highlighting the effects of blend composition and stretching drawing conditions. Shrinkage tests demonstrated that the produced films have shrinkability values in the typical range of mono-oriented films (ca. 60-80% in machine direction and ca. 10-20% in transverse direction). Moreover, the shrinkage in machine direction increases both with the mass flow rate, the take-up ratio to blow-up ratio and the bubble cooling of the film blowing process, and with the PLA content into the blend. In particular, films at higher PLA content also exhibit higher transparency and stiffness.
热收缩薄膜主要由聚烯烃制成,作为整理或阻隔薄膜在包装领域广泛应用,但由于其使用寿命短,被认为对环境影响很大。减少其碳足迹的一种可能策略是使用可生物降解的聚合物。因此,这项工作旨在开发用于绿色包装应用的新型、可热收缩、完全可生物降解的薄膜,并分析其功能性能。通过将无定形聚乳酸(PLA)和聚(丁二酸丁二醇酯-对苯二甲酸丁二醇酯)(PBAT)以不同质量比混合并与扩链剂相容来获得薄膜。它们通过实验室规模的吹膜挤出设备生产,并在物理机械性能和收缩性方面进行了表征。研究了挤出吹塑过程中的加工参数对薄膜性能的影响,突出了共混物组成和拉伸条件的影响。收缩试验表明,所生产的薄膜的收缩率值在单向薄膜的典型范围内(纵向约60-80%,横向约10-20%)。此外,纵向收缩率随着质量流率、卷取比与吹胀比以及吹膜过程中的泡管冷却而增加,并且随着共混物中PLA含量的增加而增加。特别是,PLA含量较高的薄膜也表现出较高的透明度和刚度。