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定制可消毒呼吸器的设计、制造和测试。

Design, manufacture, and testing of customized sterilizable respirator.

机构信息

Laboratory for Multiscale Material Modeling, Syracuse University, 151L Link Hall, Syracuse, NY, 13244, USA; Department of Civil and Environmental Engineering, Syracuse University, 151L Link Hall, Syracuse, NY, 13244, USA; Department of Mechanical and Aerospace Engineering, Syracuse University, 151L Link Hall, Syracuse, NY, 13244, USA.

Laboratory for Multiscale Material Modeling, Syracuse University, 151L Link Hall, Syracuse, NY, 13244, USA; Department of Civil and Environmental Engineering, Syracuse University, 151L Link Hall, Syracuse, NY, 13244, USA.

出版信息

J Mech Behav Biomed Mater. 2022 Jul;131:105248. doi: 10.1016/j.jmbbm.2022.105248. Epub 2022 Apr 25.

Abstract

The respirator as one of the personal protective equipment is essential for industrial activities (e.g., mining, painting, woodcutting, manufacturing) for protection from contaminants in the air and during the Covid-19 pandemic to protect the wearer from infection. The respirators nowadays are commonly made of rigid plastic. They are expensive, cumbersome, and not comfortable to wear. The many components with complex structures prevent it from cleaning and reusing. We develop a practical and scalable strategy to create customized respirators with durability using computational modeling and 3D printing. It is shown that by morphing the shape according to the user's photo, the respirator is designed to fit a user's face without air leaks. Using a printing-mold-casting method, this respirator can be manufactured by silicone rubber with accuracy, which is highly durable, with its mechanics primarily not affected by sterilization. These features provide the current respirator adaptivity and convenience in carrying and storing, as well as more comfort for long-time wearing.

摘要

呼吸器作为个人防护设备之一,对于工业活动(例如采矿、绘画、伐木、制造)来说是必不可少的,可以防止空气中的污染物,并且在新冠疫情期间可以保护佩戴者免受感染。如今,呼吸器通常由刚性塑料制成。它们昂贵、笨重,佩戴起来不舒服。许多具有复杂结构的部件妨碍了其清洁和重复使用。我们开发了一种实用且可扩展的策略,使用计算建模和 3D 打印来创建耐用的定制呼吸器。结果表明,通过根据用户照片改变形状,呼吸器可以根据用户的面部进行设计,而不会出现空气泄漏。使用打印-模具-铸造方法,可以使用硅橡胶进行高精度制造,这种硅橡胶具有很高的耐用性,其力学性能主要不受消毒的影响。这些特点为当前的呼吸器提供了适应性和携带及储存的便利性,以及长时间佩戴的舒适性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb03/9577475/dcf1c00b5751/gr1_lrg.jpg

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