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紫外光老化后A-PET薄膜力学性能的降解

Degradation of Mechanical Properties of A-PET Films after UV Aging.

作者信息

Vasylius Marius, Tadžijevas Artūras, Šapalas Deivydas, Kartašovas Valentinas, Janutėnienė Jolanta, Mažeika Pranas

机构信息

Marine Research Institute, Universiteto Av. 17, 92294 Klaipeda, Lithuania.

Department of Engineering, Klaipeda University, Bijūnų st. 17, 91225 Klaipeda, Lithuania.

出版信息

Polymers (Basel). 2023 Oct 20;15(20):4166. doi: 10.3390/polym15204166.

Abstract

In 2018, the European Commission adopted the European Strategy for Plastics in a Circular Economy, which outlines key actions to reduce the negative impact of plastic pollution. The strategy aims to expand plastic recycling capacity and increase the proportion of recycled materials in plastic products and packaging. Using recycled plastic can save 50-60% energy compared to virgin plastic. Recycled PET can be used in the production of A-PET films, which are predominantly used in thermo-vacuum forming for food packaging. Storage conditions can influence the mechanical properties of polymer materials. This work presents changes in the mechanical properties of A-PET films after UV irradiation. An experimental investigation of the UV aging of A-PET films was conducted in a UV aging chamber. The specimens were exposed to a UV radiation dose rate of 2.45 W/m for 1, 2, 4, 8, 16, 24, 32, and 40 h. UV measurements were also taken on a sunny day to compare the acceleration of UV irradiation in the UV aging chamber. Mechanical tensile tests were performed on two different three-layer A-PET films (100% virgin and 50% recycled). The tensile strength and relative elongation of the A-PET films were determined, and the work required to break the film was calculated. The total consumed work was divided into the work needed for elastic and plastic deformations. A study of the UV aging of A-PET films confirmed a significant effect on the films, including a loss of plasticity even after brief exposure to solar irradiance. The results of the puncture impact test further confirmed the deterioration of the mechanical properties of A-PET material due to exposure to UV radiation, with a greater effect observed for the recycled material.

摘要

2018年,欧盟委员会通过了《循环经济中的欧洲塑料战略》,该战略概述了减少塑料污染负面影响的关键行动。该战略旨在扩大塑料回收能力,并提高塑料产品和包装中回收材料的比例。与原生塑料相比,使用回收塑料可节省50-60%的能源。回收PET可用于生产A-PET薄膜,主要用于食品包装的热真空成型。储存条件会影响聚合物材料的机械性能。本文介绍了A-PET薄膜在紫外线照射后的机械性能变化。在紫外线老化箱中对A-PET薄膜的紫外线老化进行了实验研究。将试样暴露在2.45W/m的紫外线辐射剂量率下1、2、4、8、16、24、32和40小时。还在晴天进行了紫外线测量,以比较紫外线老化箱中紫外线照射的加速情况。对两种不同的三层A-PET薄膜(100%原生和50%回收)进行了机械拉伸试验。测定了A-PET薄膜的拉伸强度和相对伸长率,并计算了薄膜断裂所需的功。总消耗功分为弹性和塑性变形所需的功。对A-PET薄膜紫外线老化的研究证实了对薄膜有显著影响,包括即使在短暂暴露于太阳辐照后也会失去塑性。穿刺冲击试验的结果进一步证实了由于暴露于紫外线辐射,A-PET材料的机械性能恶化,回收材料的影响更大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac12/10610990/46d0a7524609/polymers-15-04166-g001.jpg

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