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3D打印聚合物在紫外C辐射灭菌条件下的老化

Aging of 3D Printed Polymers under Sterilizing UV-C Radiation.

作者信息

Amza Catalin Gheorghe, Zapciu Aurelian, Baciu Florin, Vasile Mihai Ion, Popescu Diana

机构信息

Department of Quality Engineering and Industrial Technologies, Faculty of Industrial Engineering and Robotics, University Politehnica of Bucharest, 060042 Bucharest, Romania.

Department of Robotics and Production Systems, Faculty of Industrial Engineering and Robotics, University Politehnica of Bucharest, 060042 Bucharest, Romania.

出版信息

Polymers (Basel). 2021 Dec 20;13(24):4467. doi: 10.3390/polym13244467.

Abstract

In the context of the COVID-19 pandemic, shortwave ultraviolet radiation with wavelengths between 200 nm and 280 nm (UV-C) is seeing increased usage in the sterilization of medical equipment, appliances, and spaces due to its antimicrobial effect. During the first weeks of the pandemic, healthcare facilities experienced a shortage of personal protective equipment. This led to hospital technicians, private companies, and even members of the public to resort to 3D printing in order to produce fast, on-demand resources. This paper analyzes the effect of accelerated aging through prolonged exposure to UV-C on mechanical properties of parts 3D printed by material extrusion (MEX) from common polymers, such as polylactic acid (PLA) and polyethylene terephthalate-glycol (PETG). Samples 3D printed from these materials went through a 24-h UV-C exposure aging cycle and were then tested versus a control group for changes in mechanical properties. Both tensile and compressive strength were determined, as well as changes in material creep properties. Prolonged UV-C exposure reduced the mechanical properties of PLA by 6-8% and of PETG by over 30%. These findings are of practical importance for those interested in producing functional MEX parts intended to be sterilized using UV-C. Scanning electron microscopy (SEM) was performed in order to assess any changes in material structure.

摘要

在新冠疫情背景下,波长在200纳米至280纳米之间的短波紫外线(UV-C)因其抗菌作用,在医疗设备、器械及空间的消毒方面使用越来越多。在疫情的最初几周,医疗机构面临个人防护装备短缺的情况。这导致医院技术人员、私人公司甚至公众求助于3D打印,以便快速生产按需提供的资源。本文分析了通过长时间暴露于UV-C进行加速老化对由常见聚合物(如聚乳酸(PLA)和聚对苯二甲酸乙二醇酯(PETG))通过材料挤出(MEX)3D打印的零件机械性能的影响。用这些材料3D打印的样品经过24小时UV-C暴露老化循环,然后与对照组进行机械性能变化测试。测定了拉伸强度和抗压强度以及材料蠕变性能的变化。长时间UV-C暴露使PLA的机械性能降低了6-8%,PETG的机械性能降低了30%以上。这些发现对于那些有兴趣生产旨在用UV-C消毒的功能性MEX零件的人具有实际重要性。进行了扫描电子显微镜(SEM)分析以评估材料结构的任何变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/394c/8709156/c647f12350a1/polymers-13-04467-g001.jpg

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