Hubbard Benjamin R, Pearce Joshua M
Department of Mechanical Engineering-Engineering Mechanics, Michigan Technological University, Houghton, MI 49931, USA.
Department of Materials Science & Engineering, Michigan Technological University, USA.
HardwareX. 2020 Oct;8:e00129. doi: 10.1016/j.ohx.2020.e00129. Epub 2020 Jul 27.
To assist firefighters and other first responders to use their existing equipment for respiration during the COVID-19 pandemic without using single-use, low-supply, masks, this study outlines an open source kit to convert a 3M-manufactured Scott Safety self-contained breathing apparatus (SCBA) into a powered air-purifying particulate respirator (PAPR). The open source PAPR can be fabricated with a low-cost 3-D printer and widely available components for less than $150, replacing commercial conversion kits saving 85% or full-fledged proprietary PAPRs saving over 90%. The parametric designs allow for adaptation to other core components and can be custom fit specifically to fire-fighter equipment, including their suspenders. The open source PAPR has controllable air flow and its design enables breathing even if the fan is disconnected or if the battery dies. The open source PAPR was tested for air flow as a function of battery life and was found to meet NIOSH air flow requirements for 4 h, which is 300% over expected regular use.
为帮助消防员和其他急救人员在新冠疫情期间使用其现有呼吸设备,而无需使用一次性、供应短缺的口罩,本研究概述了一种开源套件,可将3M公司生产的斯科特安全自给式呼吸器(SCBA)转换为电动空气净化颗粒物呼吸器(PAPR)。这种开源PAPR可以用低成本3D打印机和广泛可得的组件制造,成本不到150美元,取代商业转换套件可节省85%,取代成熟的专有PAPR可节省90%以上。参数化设计允许适配其他核心组件,并且可以专门定制以适配消防员装备,包括其背带。这种开源PAPR具有可控气流,其设计即使在风扇断开连接或电池没电时也能实现呼吸。对这种开源PAPR的气流作为电池寿命的函数进行了测试,发现其满足美国国家职业安全与健康研究所(NIOSH)4小时的气流要求,这比预期的正常使用时间高出300%。