Coatings manufactured using magnetron sputtering technology to protect against infrared radiation for use in firefighter helmets

Author:

Fejdyś Marzena1,Olszewska Karolina1,Kaczmarczyk Sylwia1,Owczarek Grzegorz2

Affiliation:

1. Institute of Security Technologies “MORATEX”, 3 M. Sklodowskiej-Curie Str., 90-505 Lodz, Poland

2. Central Institute for Labour Protection – National Research Institute, 48 Wierzbowa Str., 90-133 Lodz, Poland

Abstract

Abstract The aim of this study was to test the usefulness of magnetron sputtering technology to produce coatings on selected elements of a firefighter’s helmet to protect against infrared radiation (PN-EN 171 standard). The scope of research includes testing the deposition produced via magnetron sputtering of metallic and ceramic coatings on plastics, which are used to manufacture the components comprising the personal protection equipment used by firefighters. The UV-VIS, NIR used to research the permeation coefficients and reflections for light and infrared light and the emission spectrometry with ICP-AES used for the quantitative analysis of elements in metallic and ceramic coatings. Microstructural and micro-analytical testing of the coatings were performed using scanning electron microscopy (SEM). Measurements of the chemical compositions were conducted using energy-dispersive X-ray spectroscopy (EDS). The hardnesss of the coatings were tested using a indentation method, and the coating thicknesses were tested using a ellipsometry method.

Publisher

Walter de Gruyter GmbH

Subject

General Chemical Engineering,General Chemistry,Biotechnology

Reference34 articles.

1. 1. Standards Association of Poland. (2006). Polish standard: Personal eye protection equipment. Face covers and viewfi nders used in fi remen helmets of high effectiveness in the area of industrial safety, used by the fi remen, medical emergency teamsand rescue services. PN-EN 14458:2006.

2. 2. Standards Association of Poland. (2005). Polish standard: Personal eye protection. Filters protecting against infrared radiation. PN-EN 171:2005.

3. 3. Dietzel, Y., Przyborowski, W., Nocke, G., Offermann, P., Hollstein, F. & Meinhardt, J. (2000). Investigation of PVD arc coatings on polyamide fabrics. Surf. Coat. Technol. 135, 75-81. DOI: 10.1016/S0257-8972(00)00917-8.

4. 4. Wasa, K. & Hayakawa, S. (1992). Handbook of sputter deposition technology. Noyes, USA: Park Ridge.

5. 5. Dobrzański, L.A. & Dobrzańska-Danikiewicz, A.D. (2011). Obróbka powierzchni materiałów inżynierskich (89-136). Open Access Library. International OCSCO World Press. http://www.openaccesslibrary.com/index.php?id=81

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