{"id":16739,"date":"2021-09-13T09:05:08","date_gmt":"2021-09-13T13:05:08","guid":{"rendered":"https:\/\/textiles.ncsu.edu\/news\/?p=16739"},"modified":"2024-11-18T19:41:35","modified_gmt":"2024-11-19T00:41:35","slug":"researchers-are-developing-better-tests-for-face-coverings-with-new-tech","status":"publish","type":"post","link":"https:\/\/textiles.ncsu.edu\/news\/2021\/09\/researchers-are-developing-better-tests-for-face-coverings-with-new-tech\/","title":{"rendered":"Researchers Are Developing Better Tests for Face Coverings With New Tech"},"content":{"rendered":"\n

North Carolina State University researchers at the Textile Protection and Comfort Center<\/a> (TPACC) are developing a test method to be able to simultaneously assess how respirators, surgical masks and face coverings fit, breathe and filter.<\/p>\n\n\n

The project, backed by a nearly $500,000 grant from the U.S. Centers for Disease Control and Prevention, aims to help researchers develop better tests for face coverings used by the public.<\/p>\n\n\n

\u201cWe are trying to develop and advance testing and evaluation methods to find out how well these products work in terms of protection for the wearer, and for others,\u201d said Bryan Ormond<\/a>, assistant professor of textile engineering and chemistry at NC State.<\/p>\n\n\n

Researchers at TPACC have been working on tests<\/a> to not only measure how well different types of cloth face coverings trap tiny particles, like SARS-CoV-2 viral particles, but also to assess the impact of fit and breathability on performance.<\/p>\n\n\n

Now, they are planning to improve the specifications of a commercially available animatronic manikin to allow it to simultaneously measure filtration efficiency, breathing resistance and fit or seal in realistic simulations of people moving and talking.<\/p>\n\n\n

Since the manikin will be able to simulate people talking, the researchers will be able to study how movement in the head and face can impact filtration, fit and breathability. The manikin will also have adjustable ventilation rates to measure how heavy breathing could impact those factors. Researchers can also vary the length of their tests to study the impact of the length of wear.<\/p>\n\n\n

To improve the device\u2019s capabilities, they will use the device to understand how cloth face coverings limit the spread of particles and droplets in the air in indoor settings with poor ventilation, such as offices or classrooms.<\/p>\n\n\n

\u201cThe new head form will be able to control breathing rates better, generate aerosols and measure breathing resistance,\u201d Ormond said. \u201cAnd we\u2019ll be able to use that to understand how that might prevent transmission of particulates in certain settings.\u201d<\/p>\n\n\n

After researchers develop the test and assess different face coverings, they plan to validate their findings for fit and comfort using human subjects.<\/p>\n\n\n

Ultimately, they envision their work informing American Society for Testing and Materials <\/a>experts who are working on performance specifications for cloth face coverings used by the general public.<\/p>\n\n\n

\u201cWe want to develop a method that could serve as a new standard people could use for cloth-based coverings, surgical masks or respirators,\u201d Ormond said.<\/p>\n\n\n

\u201cOur objective is a test method for the whole face covering as worn \u2013 a valuable addition to the tools available for comprehensively evaluating performance,\u201d said Roger Barker<\/a>, director of TPACC, a leading academic center for research and testing of personal protective equipment.<\/p>\n

This post was originally published<\/a> in NC State News.<\/em><\/p>","protected":false,"raw":"\n

North Carolina State University researchers at the Textile Protection and Comfort Center<\/a> (TPACC) are developing a test method to be able to simultaneously assess how respirators, surgical masks and face coverings fit, breathe and filter.<\/p>\n\n\n

The project, backed by a nearly $500,000 grant from the U.S. Centers for Disease Control and Prevention, aims to help researchers develop better tests for face coverings used by the public.<\/p>\n\n\n

\u201cWe are trying to develop and advance testing and evaluation methods to find out how well these products work in terms of protection for the wearer, and for others,\u201d said Bryan Ormond<\/a>, assistant professor of textile engineering and chemistry at NC State.<\/p>\n\n\n

Researchers at TPACC have been working on tests<\/a> to not only measure how well different types of cloth face coverings trap tiny particles, like SARS-CoV-2 viral particles, but also to assess the impact of fit and breathability on performance.<\/p>\n\n\n

Now, they are planning to improve the specifications of a commercially available animatronic manikin to allow it to simultaneously measure filtration efficiency, breathing resistance and fit or seal in realistic simulations of people moving and talking.<\/p>\n\n\n

Since the manikin will be able to simulate people talking, the researchers will be able to study how movement in the head and face can impact filtration, fit and breathability. The manikin will also have adjustable ventilation rates to measure how heavy breathing could impact those factors. Researchers can also vary the length of their tests to study the impact of the length of wear.<\/p>\n\n\n

To improve the device\u2019s capabilities, they will use the device to understand how cloth face coverings limit the spread of particles and droplets in the air in indoor settings with poor ventilation, such as offices or classrooms.<\/p>\n\n\n

\u201cThe new head form will be able to control breathing rates better, generate aerosols and measure breathing resistance,\u201d Ormond said. \u201cAnd we\u2019ll be able to use that to understand how that might prevent transmission of particulates in certain settings.\u201d<\/p>\n\n\n

After researchers develop the test and assess different face coverings, they plan to validate their findings for fit and comfort using human subjects.<\/p>\n\n\n

Ultimately, they envision their work informing American Society for Testing and Materials <\/a>experts who are working on performance specifications for cloth face coverings used by the general public.<\/p>\n\n\n

\u201cWe want to develop a method that could serve as a new standard people could use for cloth-based coverings, surgical masks or respirators,\u201d Ormond said.<\/p>\n\n\n

\u201cOur objective is a test method for the whole face covering as worn \u2013 a valuable addition to the tools available for comprehensively evaluating performance,\u201d said Roger Barker<\/a>, director of TPACC, a leading academic center for research and testing of personal protective equipment.<\/p>\n"},"excerpt":{"rendered":"

Backed by a grant from the CDC, NC State researchers are working on new technology to simultaneously test face coverings’ breathability, filtration and fit.<\/p>\n","protected":false},"author":8,"featured_media":20543,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"source":"ncstate_wire","ncst_custom_author":"","ncst_show_custom_author":false,"ncst_dynamicHeaderBlockName":"ncst\/default-post-header","ncst_dynamicHeaderData":"{\"showAuthor\":true,\"showDate\":true,\"showFeaturedVideo\":false,\"caption\":\"\",\"displayCategoryID\":2135}","ncst_content_audit_freq":"","ncst_content_audit_date":"","footnotes":"","_links_to":"","_links_to_target":""},"categories":[742,512],"tags":[1105,1350,2327,1108,682,1382],"class_list":["post-16739","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-newswire","category-research-and-innovation","tag-dr-bryan-ormond","tag-dr-roger-barker","tag-faculty-research","tag-textile-protection-and-comfort-center","tag-tpacc","tag-wilson-college-of-textiles"],"displayCategory":null,"acf":[],"yoast_head":"Researchers Are Developing Better Tests for Face Coverings With New Tech - 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