论文标题

项目1000 x 1000:离心熔体旋转,用于N95过滤面孔呼吸器的分布式制造

Project 1000 x 1000: Centrifugal melt spinning for distributed manufacturing of N95 filtering facepiece respirators

论文作者

Molina, Anton, Vyas, Pranav, Khlystov, Nikita, Kumar, Shailabh, Kothari, Anesta, Deriso, Dave, Liu, Zhiru, Banavar, Samhita, Flaum, Eliott, Prakash, Manu

论文摘要

COVID-19大流行导致全球个人防护设备短缺。尽管现有的供应连锁店正在努力满足需求激增,但N95过滤面部呼吸器(FFRS)的供应有限,使医护人员处于危险之中。本文介绍了一种基于离心熔体旋转的结合,以使用随时可用的棉花糖机的结合为例。该方法的直径为0.30-0.49μm的颗粒产生非织造聚丙烯织物材料,其过滤效率高达96%。我们还展示了测试过滤效率和压降的可扩展方法,以确保输出材料的标准化质量。我们对相关参数进行初步优化以进行扩展,并提出这是一种可行的方法,可以以分布式方式快速生产高达100万个N95 FFR,每个站点在200个位置运行的每个站点只有六台机器。我们将这项工作分享为其他人快速构建,复制和开发自己的负担得起的模块化工艺的起点,旨在生产高质量的过滤材料,以解决全球当前的FFR短缺。

The COVID-19 pandemic has caused a global shortage of personal protective equipment. While existing supply chains are struggling to meet the surge in demand, the limited supply of N95 filtering facepiece respirators (FFRs) has placed healthcare workers at risk. This paper presents a method for scalable and distributed manufacturing of FFR filter material based on a combination of centrifugal melt spinning utilizing readily available cotton candy machines as an example. The proposed method produces nonwoven polypropylene fabric material with filtering efficiency of up to 96% for particles 0.30-0.49 μm in diameter. We additionally demonstrate a scalable means to test for filtration efficiency and pressure drop to ensure a standardized degree of quality in the output material. We perform preliminary optimization of relevant parameters for scale-up and propose that this is a viable method to rapidly produce up to one million N95 FFRs per day in distributed manner with just six machines per site operating across 200 locations. We share this work as a starting point for others to rapidly construct, replicate and develop their own affordable modular processes aimed at producing high quality filtration material to address the current FFR shortage globally.

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