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3D Printed Masks for Powders and Viruses Safety Protection Using Food Grade Polymers: Empirical Tests

机译:3D使用食品级聚合物的粉末和病毒安全保护的3D印刷面罩:实证测试

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摘要

The production of 3D printed safety protection devices (SPD) requires particular attention to the material selection and to the evaluation of mechanical resistance, biological safety and surface roughness related to the accumulation of bacteria and viruses. We explored the possibility to adopt additive manufacturing technologies for the production of respirator masks, responding to the sudden demand of SPDs caused by the emergency scenario of the pandemic spread of SARS-COV-2. In this study, we developed different prototypes of masks, exclusively applying basic additive manufacturing technologies like fused deposition modeling (FDM) and droplet-based precision extrusion deposition (db-PED) to common food packaging materials. We analyzed the resulting mechanical characteristics, biological safety (cell adhesion and viability), surface roughness and resistance to dissolution, before and after the cleaning and disinfection phases. We showed that masks 3D printed with home-grade printing equipment have similar performances compared to the industrial-grade ones, and furthermore we obtained a perfect face fit by customizing their shape. Finally, we developed novel approaches to the additive manufacturing post-processing phases essential to assure human safety in the production of 3D printed custom medical devices.
机译:3D印刷安全保护装置(SPD)的生产需要特别注意材料选择,以及与累积细菌和病毒的积累有关的机械电阻,生物安全和表面粗糙度的评估。我们探讨了采用添加剂制造技术,用于生产呼吸器面具,应对SARS-COV-2大流行扩展的紧急情况造成的SPD突然需求。在这项研究中,我们开发了不同的掩模原型,专门应用于融合沉积建模(FDM)和基于液滴的基础精密挤出沉积(DB-PED)等基本添加制造技术,以普通食品包装材料。我们分析了清洁和消毒阶段之前和之后的所得机械特性,生物安全性(细胞粘附和活力),表面粗糙度和抗溶解的抗性。我们认为,与家庭级印刷设备印刷的掩模3D与工业级相比具有类似的性能,而且通过定制其形状,我们获得了完美的脸部。最后,我们开发了对添加剂制造后处理阶段的新方法,以确保3D印刷定制医疗器械的生产中的人身安全。

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