Investigation of the features of the metal coatings formation by magnetron sputtering on fire-proof fabric materials

Authors

  • Svetlana D. Latushkina State Scientific Institution «Physical-Technical Institute of the National Academy of Sciences of Belarus»; 220141, Belarus, Minsk, Kuprevicha str., 10 https://orcid.org/0000-0001-9409-5749
  • Olga I. Posylkina State Scientific Institution «Physical-Technical Institute of the National Academy of Sciences of Belarus»; 220141, Belarus, Minsk, Kuprevicha str., 10 https://orcid.org/0000-0002-9104-9883
  • Aleksandr G. Artemchik State Scientific Institution «Physical-Technical Institute of the National Academy of Sciences of Belarus»; 220141, Belarus, Minsk, Kuprevicha str., 10

DOI:

https://doi.org/10.33408/2519-237X.2021.5-4.418

Keywords:

magnetron sputtering, metal coating, fabric material, structure, adhesion, coefficient of friction

Abstract

Purpose. Study of the peculiarities of the formation of metal coatings by the method of magnetron sputtering in order to increase the fire-retardant properties of fabric materials.

Methods. The elemental composition of the samples was studied by X-ray fluorescence analysis, the morphology of the surface of the samples was studied using scanning electron microscopy. Tribotechnical tests were carried out on the JLTB-02 tribometer.

Findings. The technological features of the formation of metallized layers using an unbalanced magnetron system on textile materials with preliminary chemical treatment are established. The morphology of the surface, the physical and mechanical properties of the coatings (adhesive strength, coefficient of friction) are investigated. The optimal value of the magnetron discharge power has been determined to ensure satisfactory adhesive strength of coatings on fabric materials with chemical impregnation.

Application field of research. The presented research results can be used in the manufacture of fire-resistant workwear necessary for rescuers-firefighters, as well as for oil and gas industry workers, welders, metallurgists and the military.

Author Biographies

Svetlana D. Latushkina, State Scientific Institution «Physical-Technical Institute of the National Academy of Sciences of Belarus»; 220141, Belarus, Minsk, Kuprevicha str., 10

Laboratory of Vacuum-plasma Coatings, Head of Laboratory; PhD in Technical Sciences, Associate Professor

Olga I. Posylkina, State Scientific Institution «Physical-Technical Institute of the National Academy of Sciences of Belarus»; 220141, Belarus, Minsk, Kuprevicha str., 10

Laboratory of Vacuum-plasma Coatings, Senior Researcher; PhD in Technical Sciences

Aleksandr G. Artemchik, State Scientific Institution «Physical-Technical Institute of the National Academy of Sciences of Belarus»; 220141, Belarus, Minsk, Kuprevicha str., 10

Laboratory of Vacuum-plasma Coatings, Researcher

References

Sabirzyanova R.N., Krasina I.V. Assortiment i oblast' primeneniya ognestoykikh tekstil'nykh materialov [The range and scope of fire-resistant textile materials]. Vestnik Kazanskogo tehnologicheskogo universiteta, 2014. Vol. 17, No. 22. Pp. 101‒105. (rus)

Bobrysheva S.N., Podobed D.L., Kashlach L.O. Snizhenie goryuchesti polimernykh materialov [Reducing the flammability of polymer materials]. Chrezvychaynye situatsii: obrazovanie i nauka, 2013. Vol. 8. No. 2. Pp. 51‒58. (rus)

Sergeeva E.A., Kostina K.D. Analiz assortimenta aramidnyh volokon i ih svojstva [Analysis of the assortment of aramid fibers and their properties]. Vestnik tehnologicheskogo universiteta, 2015. Vol. 18. No. 14. Pp. 124–125. (rus)

Korinteli A.M., Kurenova I.V. Issledovanie tekhnologicheskikh resursov primeneniya produktov iz aramidnykh volokon [Research of technological resources for the use of aramid fiber products]. Sovremennye nauchnye issledovaniya i razrabotki, 2016. No. 6 (6). Pp. 306‒309. (rus)

Gorberg B.L., Ivanov A.A., Mamontov O.V., Stegnin V.A., Titov V.A. Modifitsirovanie tekstil'nykh materialov naneseniem nanopokrytiy metodom magnetronnogo ionno-plazmennogo raspyleniya [Modification of textile materials by nanocoating by magnetron ion-plasma sputtering]. Rossiyskiy khimicheskiy zhurnal, 2011. No 3. Pp. 7‒13. (rus)

Berlin E.V., Dvinin S.A., Seydman L.A. Vakuumnaya tekhnologiya i oborudovanie dlya naneseniya i travleniya tonkikh plenok [Vacuum technology and equipment for applying and etching thin films]. Moscow: Tekhnosfera, 2007. 176 p. (rus)

Musil J., Lestina J., Vlcek J., Tolg T. Pulsed DC magnetron discharge for high-rate sputtering of thin films. Journal of Vacuum Science and Technology, 2001. Vol. 19, No. 2. Pp. 420‒424. DOI: https://www.doi.org/10.1116/1.1339018.

Alami J., Gudmundsson J.T., Bohlmark J., Birch J., Helmersson U. Plasma dynamics in a highly ionized pulsed magnetron discharge. Plasma Sources Science and Technology, 2005. Vol. 14, No. 3. Pp. 525–531. DOI: https://www.doi.org/10.1088/0963-0252/14/3/015.

Downloads


Abstract views: 214
PDF Downloads: 113

Published

2021-11-22

How to Cite

Latushkina С. Д., Posylkina О. И. and Artemchik А. Г. (2021) “Investigation of the features of the metal coatings formation by magnetron sputtering on fire-proof fabric materials”, Journal of Civil Protection, 5(4), pp. 418–426. doi: 10.33408/2519-237X.2021.5-4.418.

Most read articles by the same author(s)