## Abstract The effect of ethylene–propylene–diene monomer rubber (EPDM) as an additive on the abrasion resistance of a thermoplastic polyurethane (TPU) resin was investigated. The mechanical properties and microstructure of the resultant TPU/EPDM composites were evaluated, and the surface morpholo
Abrasion resistance of medical glove materials
✍ Scribed by Walsh, Donna L. ;Schwerin, Matthew R. ;Kisielewski, Richard W. ;Kotz, Richard M. ;Chaput, Maria P. ;Varney, George W. ;To, Theresa M.
- Publisher
- John Wiley and Sons
- Year
- 2003
- Tongue
- English
- Weight
- 189 KB
- Volume
- 68B
- Category
- Article
- ISSN
- 0021-9304
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✦ Synopsis
Abstract
Due to the increasing demand for nonlatex medical gloves in the health‐care community, there is a need to assess the durability of alternative glove materials. This study examines durability characteristics of various glove materials by abrasion resistance testing. Natural rubber latex (latex), polyvinyl chloride (vinyl), acrylonitrile butadiene (nitrile), polychloroprene (neoprene), and a styrene‐ethylene/butylene‐styrene block copolymer (SEBS) were tested. All test specimens, with the exception of the vinyl, were obtained from surgical gloves. Unaged out‐of‐the‐box specimens as well as those subjected to various degrees of artificial aging were included in the study. After the abrasion sequence, the barrier integrity of the material was assessed through the use of a static leak test. Other traditional tests performed on these materials were viral penetration to validate the abrasion data and tear testing for comparative purposes. The results indicate that specific glove‐material performance is dependent upon the particular test under consideration. Most notably, abrasion, even in controlled nonsevere conditions, may compromise to varying degrees the barrier integrity of latex, vinyl, SEBS, nitrile, and neoprene glove materials. However, as evidenced by the results of testing three brands of neoprene gloves, the abrasion resistance of any one glove material may be significantly affected by variations in production processes. © 2003 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 68B: 81–87, 2004
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