Cotton Woven Fabrics as Protective Polymer Materials against Solar Radiation in the Range of 210–1200 nm

Author:

Dubrovski Polona Dobnik1ORCID,Fakin Darinka2,Ojstršek Alenka2ORCID

Affiliation:

1. Mechanical Engineering Research Institute, Faculty of Mechanical Engineering, University of Maribor, 2000 Maribor, Slovenia

2. Institute of Engineering Materials and Design, Faculty of Mechanical Engineering, University of Maribor, 2000 Maribor, Slovenia

Abstract

The proposed paper describes the influence of woven fabric constructional parameters (type of weave, relative fabric density) and colouration (obtained by eco-friendly dyeing) on the solar transmittance of cotton woven fabrics in the range of 210–1200 nm. The cotton woven fabrics in their raw state were prepared according to Kienbaum’s setting theory, at three levels of relative fabric density and three levels of the weave factor, and then exposed to the dyeing process with natural dyestuffs (beetroot, walnut leaves). After ultraviolet/visible/near-infrared (UV/VIS/IRA) solar transmittance and reflection in the range of 210–1200 nm were recorded, the influence of the fabric construction and colouration were analysed. The guidelines for fabric constructor were proposed. The results show that the walnut-coloured satin samples at the third level of relative fabric density provide the best solar protection in the whole solar spectrum. All the tested eco-friendly dyed fabrics offer good solar protection, while only raw satin fabric at the third level of relative fabric density can be classified as solar protective material with even better protection in IRA region than some coloured samples.

Funder

Engineering of Woven Fabrics for Ultraviolet Radiation Protection and Mitigation of Skin Cancer

Slovenian Research Agency “ARRS”

Slovenian Research Agency—ARRS

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference39 articles.

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3. The relationship between occupational sun exposure and non-melanoma skin cancer: Clinical basics, epidemiology, occupational disease evaluation, and prevention;Fartasch;Dtsch. Arztebl. Int.,2012

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5. Laikova, K.V., Oberemok, V.V., Krasnodubets, A.M., Gal′chinsky, N.V., Useinov, R.Z., Novikov, I.A., Temirova, Z.Z., Gorlov, M.V., Shved, N.A., and Kumeiko, V.V. (2019). Advances in the Understanding of Skin Cancer: Ultraviolet Radiation, Mutations, and Antisense Oligonucleotides as Anticancer Drugs. Molecules, 24.

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