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An Overview on Personal Protective Equipment (PPE) Fabricated with Additive Manufacturing Technologies in the Era of COVID-19 Pandemic

机译:在Covid-19大流行时代的添加剂制造技术制造的个人防护设备(PPE)概述

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摘要

Different additive manufacturing technologies have proven effective and useful in remote medicine and emergency or disaster situations. The coronavirus disease 2019 (COVID-19) disease, caused by the Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) virus, has had a huge impact on our society, including in relation to the continuous supply of personal protective equipment (PPE). The aim of the study is to give a detailed overview of 3D-printed PPE devices and provide practical information regarding the manufacturing and further design process, as well as describing the potential risks of using them. Open-source models of a half-face mask, safety goggles, and a face-protecting shield are evaluated, considering production time, material usage, and cost. Estimations have been performed with fused filament fabrication (FFF) and selective laser sintering (SLS) technology, highlighting the material characteristics of polylactic acid (PLA), polyamide, and a two-compound silicone. Spectrophotometry measurements of transparent PMMA samples were performed to determine their functionality as goggles or face mask parts. All the tests were carried out before and after the tetra-acetyl-ethylene-diamine (TAED)-based disinfection process. The results show that the disinfection has no significant effect on the mechanical and structural stability of the used polymers; therefore, 3D-printed PPE is reusable. For each device, recommendations and possible means of development are explained. The files of the modified models are provided. SLS and FFF additive manufacturing technology can be useful tools in PPE development and small-series production, but open-source models must be used with special care.
机译:不同的添加剂制造技术已被证明在远程医学和紧急情况或灾害情况下有效可用。由严重急性呼吸综合征冠状病毒2(SARS-COV-2)病毒引起的冠状病毒疾病2019(Covid-19)疾病对我们的社会产生了巨大影响,包括与个人防护装备的连续供应有关( PPE)。该研究的目的是提供3D印刷PPE器件的详细概述,并提供有关制造和进一步设计过程的实用信息,以及描述使用它们的潜在风险。考虑生产时间,材料使用和成本,评估半面掩模,安全护目镜和面部保护护罩的开源模型。已经用熔丝丝制造(FFF)和选择性激光烧结(SLS)技术进行了估计,突出了聚乳酸(PLA),聚酰胺和两种化合物硅氧烷的材料特性。进行透明PMMA样品的分光光度测量以确定它们作为护目镜或面罩部件的功能。所有测试在四乙酰 - 乙烯 - 二胺(TAED)的消毒过程之前和之后进行。结果表明,消毒对二手聚合物的机械和结构稳定性没有显着影响;因此,3D打印的PPE是可重复使用的。对于每个设备,解释建议和可能的发展手段。提供了修改模型的文件。 SLS和FFF添加剂制造技术可以是PPE开发和小型系列生产中的有用工具,但必须与特殊护理一起使用开源模型。

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