a School of Power and Mechanical Engineering , Wuhan University , No. 299 Bayi Road, Wuhan , China.
J Occup Environ Hyg. 2018 Mar;15(3):226-234. doi: 10.1080/15459624.2017.1411598.
Filtering Facepiece Respirator (FFR) is the most common respirator users in the health care environment utilize for personal protection from outside particles. Comfort and fit are important while wearing an FFR. This paper proposes a novel technology to produce customized face seal design for improving the wearing comfort and fit of FFR wearers. In order to customize the design of face seals, we scanned the faces of three subjects using three-dimensional (3D) laser scanning method. A customized face seal for a 3M 8210 N95 FFR for each headform was designed using reverse engineering technique. Next, the face seal prototypes were fabricated with Acrylonitrile Butadiene Styrene (ABS) plastic using the 3D printing method. A force sensing system based on Arduino Uno R3 was developed, and the force sensor of this system was inserted between the FFR and headform to measure contact pressure. Experimental results showed that the newly designed FFR face seal provided the subjects with an improved contact pressure.
过滤式面罩(FFR)是医疗保健环境中使用者最常使用的个人防护口罩,可防止外部颗粒进入。佩戴 FFR 时,舒适度和贴合度很重要。本文提出了一种生产定制面部密封设计的新技术,以提高 FFR 佩戴者的佩戴舒适度和贴合度。为了定制面部密封设计,我们使用三维(3D)激光扫描方法对三位受试者的面部进行了扫描。使用逆向工程技术为每个头模设计了 3M 8210 N95 FFR 的定制面部密封。接下来,使用 3D 打印方法,使用丙烯腈丁二烯苯乙烯(ABS)塑料制造了面部密封原型。开发了一个基于 Arduino Uno R3 的力感测系统,并将该系统的力传感器插入 FFR 和头模之间以测量接触压力。实验结果表明,新设计的 FFR 面罩为受试者提供了更好的接触压力。