• FluTrackers.com Inc. does not provide medical advice. Information on this web site is collected from various internet resources, and the FluTrackers board of directors makes no warranty to the safety, efficacy, correctness or completeness of the information posted on this site by any author or poster. The information collated here is for instructional and/or discussion purposes only and is NOT intended to diagnose or treat any disease, illness, or other medical condition. Every individual reader or poster should seek advice from their personal physician/healthcare practitioner before considering or using any interventions that are discussed on this website. By continuing to access this website you agree to consult your personal physican before using any interventions posted on this website, and you agree to hold harmless FluTrackers.com Inc., the board of directors, the members, and all authors and posters for any effects from use of any medication, supplement, vitamin or other substance, device, intervention, etc. mentioned in posts on this website, or other internet venues referenced in posts on this website.
  • We are not asking for any donations. Do not donate to any entity who says they are raising funds for us.

Adv Clin Exp Med . Additive manufacturing technologies enabling rapid and interventional production of protective face shields and masks during the

tetano

Editor, Senior Moderator
Adv Clin Exp Med


. 2020 Oct 1.
doi: 10.17219/acem/126296. Online ahead of print.
Additive manufacturing technologies enabling rapid and interventional production of protective face shields and masks during the COVID-19 pandemic


Jędrzej Wierzbicki[SUP] 1 [/SUP], Maciej Nowacki[SUP] 1 [/SUP], Marta Chrzanowska[SUP] 1 [/SUP], Rafał Matkowski[SUP] 2 3 [/SUP], Marcin Ziętek[SUP] 2 3 [/SUP], Katarzyna Nowacka[SUP] 4 [/SUP], Adam Maciejczyk[SUP] 2 3 [/SUP], Edyta Pawlak-Adamska[SUP] 5 [/SUP]



Affiliations

Abstract

Background: Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is transmitted through respiratory droplets and contact routes, hence the demand for personal protective equipment (PPE) has increased during the outbreak of coronavirus disease 2019 (COVID-19). Among the most noticeable shortages was the lack of face shields. The urgent demand for PPE induced interdisciplinary cooperation to overcome the shortages, and additive manufacturing proved to be ideal for the crisis situation.
Objectives: To investigate the possibilities of implementing additive manufacturing technologies in the interventional fabrication of protective face shields for medical staff.
Material and methods: An Ender 3 Pro 3D printer was used to print headbands and Cura 4.4 was chosen as the slicing software. Open source face shield designs were downloaded as standard tessellation language (STL) files and compared. Only models with scientific support were taken under consideration.
Results: The mean time for producing the headbands tested ranged from 59 min to almost 3 h, depending on the design. After setting up our low budget printer and choosing the Prusa RC 3 protective face shield as the main product, we were able to fabricate about 30 face shields per week at a cost of about €1each. During 4 weeks, 126 face shields were produced and delivered to various hospital wards, which substantially eased the shortages.
Conclusions: Additive manufacturing enables immediate responses to needs in emergency situations, and allows for mass production of personal protective equipment in a short time due the rapid exchange of data among printer users. Despite the unregulated legal situation and insufficient scientific evidence, such protective equipment has been approved by clinicians and is currently used by medical personnel around the world.

Keywords: 3-dimensional printing; COVID-19; additive manufacturing; face shield; personal protective equipment.
 
Back
Top Bottom