Optimization of the Composition of Silicone Enamel by the Taguchi Method Using Surfactants Obtained from Oil Refining Waste

The aim of this work is to optimize the composition of a two-component silicone enamel consisting of an aluminum pigment and a polyphenylsiloxane polymer to obtain the maximum dispersion of the pigment in the coating. The following products were used as surfactants: AS-1, PEPA, and Telaz. To assess...

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Autores principales: Vitaliy Tyukanko, Alexandr Demyanenko, Antonina Dyuryagina, Kirill Ostrovnoy, Marianna Lezhneva
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Publicado: MDPI AG 2021
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spelling oai:doaj.org-article:9653fe74bb774d949f148600ddde9f062021-11-11T18:41:46ZOptimization of the Composition of Silicone Enamel by the Taguchi Method Using Surfactants Obtained from Oil Refining Waste10.3390/polym132136192073-4360https://doaj.org/article/9653fe74bb774d949f148600ddde9f062021-10-01T00:00:00Zhttps://www.mdpi.com/2073-4360/13/21/3619https://doaj.org/toc/2073-4360The aim of this work is to optimize the composition of a two-component silicone enamel consisting of an aluminum pigment and a polyphenylsiloxane polymer to obtain the maximum dispersion of the pigment in the coating. The following products were used as surfactants: AS-1, PEPA, and Telaz. To assess the effect of surfactants on the dispersion of the pigment, computer-optical microscopy was used. The results of the studies showed that all the studied surfactants cause an improvement in the dispersion of the pigment. According to the degree of influence on the dispersion of the pigment, surfactants can be arranged in a row: PEPA > Telaz > AS-1. When the PEPA content in the enamel is 0.25 g/dm<sup>3</sup>, a decrease in the diameter of the pigment particles by 46% (from 26 to 14 microns) is recorded, with an increase in their specific amount by 2 times (from 258 to 550 pcs). Optimal enamel compositions allow a reduction in the corrosion rate by 11 times (from 0.6 to 0.053 mm/year) and improvement to the decorative properties of coatings (roughness, gloss, etc.). The effectiveness of the AS-1 product (obtained from oil refining waste) as a dispersant additive in silicone enamel has been proven.Vitaliy TyukankoAlexandr DemyanenkoAntonina DyuryaginaKirill OstrovnoyMarianna LezhnevaMDPI AGarticledispersionsurfactantssiliconespolyorganosiloxanescomposition optimizationTaguchi methodOrganic chemistryQD241-441ENPolymers, Vol 13, Iss 3619, p 3619 (2021)
institution DOAJ
collection DOAJ
language EN
topic dispersion
surfactants
silicones
polyorganosiloxanes
composition optimization
Taguchi method
Organic chemistry
QD241-441
spellingShingle dispersion
surfactants
silicones
polyorganosiloxanes
composition optimization
Taguchi method
Organic chemistry
QD241-441
Vitaliy Tyukanko
Alexandr Demyanenko
Antonina Dyuryagina
Kirill Ostrovnoy
Marianna Lezhneva
Optimization of the Composition of Silicone Enamel by the Taguchi Method Using Surfactants Obtained from Oil Refining Waste
description The aim of this work is to optimize the composition of a two-component silicone enamel consisting of an aluminum pigment and a polyphenylsiloxane polymer to obtain the maximum dispersion of the pigment in the coating. The following products were used as surfactants: AS-1, PEPA, and Telaz. To assess the effect of surfactants on the dispersion of the pigment, computer-optical microscopy was used. The results of the studies showed that all the studied surfactants cause an improvement in the dispersion of the pigment. According to the degree of influence on the dispersion of the pigment, surfactants can be arranged in a row: PEPA > Telaz > AS-1. When the PEPA content in the enamel is 0.25 g/dm<sup>3</sup>, a decrease in the diameter of the pigment particles by 46% (from 26 to 14 microns) is recorded, with an increase in their specific amount by 2 times (from 258 to 550 pcs). Optimal enamel compositions allow a reduction in the corrosion rate by 11 times (from 0.6 to 0.053 mm/year) and improvement to the decorative properties of coatings (roughness, gloss, etc.). The effectiveness of the AS-1 product (obtained from oil refining waste) as a dispersant additive in silicone enamel has been proven.
format article
author Vitaliy Tyukanko
Alexandr Demyanenko
Antonina Dyuryagina
Kirill Ostrovnoy
Marianna Lezhneva
author_facet Vitaliy Tyukanko
Alexandr Demyanenko
Antonina Dyuryagina
Kirill Ostrovnoy
Marianna Lezhneva
author_sort Vitaliy Tyukanko
title Optimization of the Composition of Silicone Enamel by the Taguchi Method Using Surfactants Obtained from Oil Refining Waste
title_short Optimization of the Composition of Silicone Enamel by the Taguchi Method Using Surfactants Obtained from Oil Refining Waste
title_full Optimization of the Composition of Silicone Enamel by the Taguchi Method Using Surfactants Obtained from Oil Refining Waste
title_fullStr Optimization of the Composition of Silicone Enamel by the Taguchi Method Using Surfactants Obtained from Oil Refining Waste
title_full_unstemmed Optimization of the Composition of Silicone Enamel by the Taguchi Method Using Surfactants Obtained from Oil Refining Waste
title_sort optimization of the composition of silicone enamel by the taguchi method using surfactants obtained from oil refining waste
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/9653fe74bb774d949f148600ddde9f06
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AT antoninadyuryagina optimizationofthecompositionofsiliconeenamelbythetaguchimethodusingsurfactantsobtainedfromoilrefiningwaste
AT kirillostrovnoy optimizationofthecompositionofsiliconeenamelbythetaguchimethodusingsurfactantsobtainedfromoilrefiningwaste
AT mariannalezhneva optimizationofthecompositionofsiliconeenamelbythetaguchimethodusingsurfactantsobtainedfromoilrefiningwaste
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