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揭开口罩的面纱:探究物理特性在织物口罩预防新冠病毒传播效果中的作用

Unmasking the Mask: Investigating the Role of Physical Properties in the Efficacy of Fabric Masks to Prevent the Spread of the COVID-19 Virus.

作者信息

Gericke Adine, Venkataraman Mohanapriya, Militky Jiri, Steyn Hester, Vermaas Jana

机构信息

Department of Chemistry and Polymer Science, University of Stellenbosch, Stellenbosch 7600, South Africa.

Department of Material Engineering, Faculty of Textile Engineering, Technical University of Liberec, 461 17 Liberec, Czech Republic.

出版信息

Materials (Basel). 2021 Dec 15;14(24):7756. doi: 10.3390/ma14247756.

Abstract

To function as source control, a fabric mask must be able to filter micro-droplets (≥5 µm) in expiratory secretions and still allow the wearer to breathe normally. This study investigated the effects of fabric structural properties on the filtration efficiency (FE) and air permeability (AP) of a range of textile fabrics, using a new method to measure the filtration of particles in the described conditions. The FE improved significantly when the number of layers increased. The FE of the woven fabrics was generally higher, but double-layer weft knitted fabrics, especially when combined with a third (filter) layer, provided a comparable FE without compromising on breathability. This also confirmed the potential of nonwoven fabrics as filter layers in masks. None of the physical fabric properties studied affected FE significantly more than the others. The variance in results achieved within the sample groups show that the overall performance properties of each textile fabric are a product of its combined physical or structural properties, and assumptions that fabrics which appear to be similar will exhibit the same performance properties cannot be made. The combination of layers of fabric in the design of a mask further contributes to the product performance.

摘要

作为源头控制手段,织物口罩必须能够过滤呼气分泌物中的微滴(≥5微米),同时仍要让佩戴者能够正常呼吸。本研究使用一种新方法来测量在所述条件下颗粒的过滤情况,调查了织物结构特性对一系列纺织面料的过滤效率(FE)和透气率(AP)的影响。层数增加时,过滤效率显著提高。机织面料的过滤效率通常更高,但双层纬编织物,尤其是与第三(过滤)层结合时,在不影响透气性的情况下提供了相当的过滤效率。这也证实了无纺布作为口罩过滤层的潜力。所研究的织物物理特性中,没有一种对过滤效率的影响明显大于其他特性。样本组内获得的结果差异表明,每种纺织面料的整体性能特性是其综合物理或结构特性的产物,不能假设看似相似的面料会表现出相同的性能特性。口罩设计中织物层的组合进一步影响产品性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfb5/8705731/ae592a1f9914/materials-14-07756-g001.jpg

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