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Innovative technologies in corrosion-resistant coatings development aimed at ship navigation equipment protection

НазваInnovative technologies in corrosion-resistant coatings development aimed at ship navigation equipment protection
Назва англійськоюInnovative technologies in corrosion-resistant coatings development aimed at ship navigation equipment protection
АвториOleh Bezbakh
ПринадлежністьKherson state maritime academy, Kherson, Ukraine
Бібліографічний описInnovative technologies in corrosion-resistant coatings development aimed at ship navigation equipment protection / Oleh Bezbakh // Scientific Journal of TNTU. — Tern.: TNTU, 2021. — Vol 103. — No 3. — P. 5–12.
Bibliographic description:Bezbakh O. (2021) Innovative technologies in corrosion-resistant coatings development aimed at ship navigation equipment protection. Scientific Journal of TNTU (Tern.), vol 103, no 3, pp. 5–12.
УДК

667.64:678.026

Ключові слова

composite, adhesive, corrosion, coating, innovative technologies.

The efficient use of some innovative technologies in adhesives with advanced operational characteristics development aimed at anti-corrosion properties increase of transport means has been substantiated in the paper under discussion. The above-mentioned technologies involving the use of some interaction-active ingredients forming the cross-linkable coatings composition, including some polymers, have provided their cohesion properties essential improvement. Epoxy diane oligomer ED-16 has been chosen as the main component for the matrix in the composite formation. The aliphatic resin DЕG-1 (GOST 10136-77) as a plasticizer has been added to the epoxy oligomer. The compound has been formed of the following concentration: epoxy resin ED-16: plasticizer DЕG -1 – 100: 40. The hardener of cold hardening polyethelenepolyamine PEPA (ТУ 6-05-241-202-78) has been used at the epoxy resin-based developed materials polymerization. Phthalic acid anhydride has been used as a modifier to improve the properties of epoxy composite materials. The modifier was added to the matrix in the following ratio: from 0,10 to 2,00 pts.wt. per 100 pts.wt. of epoxy oligomer ЕD-20. The molecular formula of the modifier is as follows: C8H4O3. Molar mass is 148,1 g/mol. Density is ρ = 1,52 г/см³. To form a composite material or a protective coating with some improved adhesive properties and inconsiderable residual stresses the phthalic acid anhydride as a modifier was found to be added to the epoxy matrix with the content q = 1,25 pts.wt. per 100 pts.wt. of the epoxy matrix (oligomer ЕD-20 + plasticizer DЕG -1). In this case, the adhesive strength of the coating is being increased from sа = 28,3 MPа to sа = 46,4 MPа, and residual stresses – from sз = 1,9 MPа to sз = 2,1 MPа. First of all, the improved properties of the modified materials were caused by the interaction of active carbonyl (С=О) groups of the modifier with nitrogen-containing (NH-) groups of the hardener. It has provided the increase of the composite cross-linking degree resulted in their both adhesive and cohesion properties improvement. Moreover, it was found that the modifier use in the compound with the content q = 1,0…1,5 00 pts.wt. per 100 00 pts.wt. of the matrix has provided the increase of the river water influenced coatings resistance from ρ = 12,1 Оm·cm2 до ρ = 21,2…22,4 Оm·cm2. Though, some further increase of the additive content in the coating has caused the deterioration of anti-corrosion characteristics of the materials. Thus, the conducted study has contributed to the determination of the most efficient content ratio of phthalic acid anhydride as a modifier to for the coatings of functional use. 

ISSN:2522-4433
Перелік літератури
  1. Voronkov A. G., Yartsev V. P. Epoksidnyie polimerrastvoryi dlya remonta i zaschityi stroitelnyih izdeliy i konstruktsiy : uchebnoe posobie.Tambov: Izd-vo Tamb. gos. tehn. un-ta, 2006. 92 р.
  2. Buketov А. V., Sizonenko O. М., Kruglyj D. G., Cherniavska Т. V., Appazov E. S., Klevtsov K. M., Lypian Ye. V. Influence of synthesized iron-carbides mixture on properties of epoxy coatings for transport. Journal of Engineering and Applied Science. 2020. Vol. 67. Issue 7. P. 1633–1648. URL: https:// www.jeasonline.org/paper/1157/preview.
  3. Vilenskiy V. O., Demchenko V. L., Kercha Yu. Yu., Shut M. I. Doslidzhennya termomehanichnih ta teplofizichnih vlastivostey nanokompozitiv na osnovi polIepoksidu ta dispersnih napovnyuvachiv riznoyi prirodi. Fizika kondensovanih visokomolekulyarnih sistem. 2009. Vip. 13. Р. 18–23.
  4. Kochergin Yu. S., Kulik T. A., Grigorenko T. I. Kleevyie kompozitsii na osnove modifitsirovannyih epoksidnyih smol. Plasticheskie massyi. 2005. No. 10. Р. 9–16.
  5. Buketov A., Brailo M., Yakushchenko S., Sapronov O., Vynar V., Bezbakh О., Negrutsa R. Investigation of Tribological Properties of Two-Component Bidisperse Epoxy- Polyester Composite Materials for Its Use in the Friction Units of Means of Sea Transport. Periodica Polytechnica Mechanical Engineering. 2019. Vol. 63. No. 3. P. 171–182. DOI: https://doi.org/10.3311/PPme.13161.
  6. Buketov A. V., Brailo M. V., Yakushchenko S. V., Sapronov O. O., Smetankin S. O. The formulation of epoxy-polyester matrix with improved physical and mechanical properties for restoration of means of sea and river transport. Journal of Marine Engineering & Technology. 2020. Vol. 19. No. 3. P. 109–114. DOI: https://doi.org/10.1080/20464177.2018.1530171.
References:
  1. Voronkov A. G., Yartsev V. P. Epoksidnyie polimerrastvoryi dlya remonta i zaschityi stroitelnyih izdeliy i konstruktsiy : uchebnoe posobie.Tambov: Izd-vo Tamb. gos. tehn. un-ta, 2006. 92 р.
  2. Buketov А. V., Sizonenko O. М., Kruglyj D. G., Cherniavska Т. V., Appazov E. S., Klevtsov K. M., Lypian Ye. V. Influence of synthesized iron-carbides mixture on properties of epoxy coatings for transport. Journal of Engineering and Applied Science. 2020. Vol. 67. Issue 7. P. 1633–1648. URL: https:// www.jeasonline.org/paper/1157/preview.
  3. Vilenskiy V. O., Demchenko V. L., Kercha Yu. Yu., Shut M. I. Doslidzhennya termomehanichnih ta teplofizichnih vlastivostey nanokompozitiv na osnovi polIepoksidu ta dispersnih napovnyuvachiv riznoyi prirodi. Fizika kondensovanih visokomolekulyarnih sistem. 2009. Vip. 13. Р. 18–23.
  4. Kochergin Yu. S., Kulik T. A., Grigorenko T. I. Kleevyie kompozitsii na osnove modifitsirovannyih epoksidnyih smol. Plasticheskie massyi. 2005. No. 10. Р. 9–16.
  5. Buketov A., Brailo M., Yakushchenko S., Sapronov O., Vynar V., Bezbakh О., Negrutsa R. Investigation of Tribological Properties of Two-Component Bidisperse Epoxy- Polyester Composite Materials for Its Use in the Friction Units of Means of Sea Transport. Periodica Polytechnica Mechanical Engineering. 2019. Vol. 63. No. 3. P. 171–182. DOI: https://doi.org/10.3311/PPme.13161.
  6. Buketov A. V., Brailo M. V., Yakushchenko S. V., Sapronov O. O., Smetankin S. O. The formulation of epoxy-polyester matrix with improved physical and mechanical properties for restoration of means of sea and river transport. Journal of Marine Engineering & Technology. 2020. Vol. 19. No. 3. P. 109–114. DOI: https://doi.org/10.1080/20464177.2018.1530171.

 

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