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Tytuł artykułu

Electron Magnetic Resonance Study of the Most Sensitive Metal Paint Components for Degradation

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents an electron magnetic resonance study of metal paints in terms of identification and selection of appropriate pigment components based on the summation of spectral components. Research was carried out to assess the durability of paints on the basis of the detection of free radicals in individual components, the occurrence of which leads to paint degradation. Two types of acrylic resins, three types of organic pigments, and titanium white, hardener, and clearcoat were tested. The g-factor as well as all electron magnetic resonance line parameters were calculated. Electron magnetic resonance is found to be useful in the effort to eliminate a paint component that reduces color durability and to select components in terms of paint quality.
Słowa kluczowe
Twórcy
  • Institute of Materials Engineering, College of Natural Sciences, University of Rzeszow, ul. Pigonia 1, 35-310 Rzeszow, Poland
  • Institute of Materials Engineering, College of Natural Sciences, University of Rzeszow, ul. Pigonia 1, 35-310 Rzeszow, Poland
  • Institute of Physics, College of Natural Sciences, University of Rzeszow, ul. Pigonia 1, 35-310 Rzeszow, Poland
Bibliografia
  • 1. Kłonica M. Application of the Ozonation Process for Shaping the Energy Properties of the Surface Layer of Polymer Construction Materials. Journal of Ecological Engineering. 2022; 23(2): 212–219. DOI: 10.12911/22998993/145265
  • 2. Kłonica M., Kuczmaszewski J. Modification of Ti6Al4V Titanium Alloy Surface Layer in the Ozone Atmosphere. Materials. 2019; 12(13): 1–14. DOI: 10.3390/ma12132113.
  • 3. Matuszak J., Kłonica M., Zagórski I. Effect of Brushing Conditions on Axial Forces in Ceramic Brush Surface Treatment.5th International Workshop on Metrology for AeroSpace (MetroAeroSpace) IEEE 2019: proceedings 2019; 644–648. DOI: 10.1109/MetroAeroSpace.2019.8869605.
  • 4. Doroszkowski A. Paints. In Technological Applica- tions of Dispersions. CRC Press. 2020.
  • 5. Szterk A., Stefaniuk I., Cieniek B., Kuźma M. Antioxidant properties of wines produced in the podkarpacie region. Nukleonika. 2013; 58: 447–450.
  • 6. Sadowska-Bartosz I., Stefaniuk I., Cieniek B., Bartosz G. Tempo-phosphate as an ESR tool to study phosphate transport. Free Radic. Res. 2018; 52: 335–338. DOI: 10.1080/10715762.2017.1400163.
  • 7. Stefaniuk I., Cieniek B., Virt I. Magnetic Properties of Zinc-Oxide Composite Doped with Transition Metal Ions (Mn, Co, Cr). Curr. Top. Biophys. 2010; 33: 221–226.
  • 8. Jasniewski A., Hu Y., Ribbe M.W. Electron paramagnetic resonance spectroscopy of metalloproteins. In Methods in Molecular Biology; Methods Mol Biol. 2019; 1876: 197–211.
  • 9. Eaton, S.S., Woodcock L.B., Eaton G.R. Continuous wave electron paramagnetic resonance of nitroxide biradicals in fluid solution. Concepts Magn. Reson. Part A Bridg. Educ. Res. 2018; 47A. DOI: 10.1002/cmr.a.21426
  • 10. Stefaniuk I., Potera P., Rogalska I., Cieniek B. The Multifrequency EPR Measurements of Mullite and Al2O3 Powders Used in Aerospace Industry. In Proceedings of the International Conference on Innovative Technologies, IN-TECH 2013; 2013; 109–112.
  • 11. Stefaniuk I., Cieniek B., Rogalska I. Electron magnetic resonance study of multiwalled carbon nano- tubes and carbon nanohorns. EPJ Web Conf. 2017; 133: 1–4. DOI: 10.1051/epjconf/201713302003
  • 12. Cieniek B., Stefaniuk I., Virt I., Gamernyk R.V. Rogalska I. Zinc–Cobalt Oxide Thin Films: High Curie Temperature Studied by Electron Magnetic Resonance. Molecules. 2022; 27: 8500. DOI: 10.3390/molecules27238500
  • 13. Rowe M.W. Dating of rock paintings in the Americas: A word of caution. CLOTTES J. (dir.), L’art. pléistocène dans le monde / Pleistocene art world / Arte pleistoceno en el mundo, Actes du Congrès IFRAO, Tarascon-sur- Ariège, Sept. 2010, Symp. « Art pléistocène dans les Amériques ». N° spécial Préhistoire, Ar 2012, LXV–LXVI, CD573–CD584.
  • 14. Moretto L.M., Orsega E.F. Mazzocchin, G.A. Spectroscopic methods for the analysis of celadonite and glauconite in Roman green wall paintings. J. Cult. Herit. 2011; 12: 384–391. DOI: 10.1016/j. culher.2011.04.003
  • 15. Christiansen M.B., Sørensen M.A., Sanyova J., Bendix J., Simonsen, K.P. Characterisation of the rare cadmium chromate pigment in a 19th century tube color by Raman, FTIR, X-ray and EPR. Spectrochim. Acta - Part A Mol. Biomol. Spectrosc. 2017, 175, 208–214. DOI: 10.1016/j.saa.2016.12.028
  • 16. Gobeltz N., Demortier A., Lelieur J.P., Duhayon C. Correlation between EPR, Raman and colorimetric characteristics of the blue ultramarine pigments. J. Chem. Soc. - Faraday Trans. 1998; 94: 677–681. DOI: 10.1039/a707619c
  • 17. Orsega E.F., Agnoli F. Mazzocchin, G.A. An EPR study on ancient and newly synthesised Egyptian blue. Talanta. 2006; 68: 831–835. DOI: 10.1016/j. talanta.2005.06.001
  • 18. Raulin K., Gobeltz N., Vezin H., Touati N. Ledé, B.; Moissette, A. Identification of the EPR signal of S2- in green ultramarine pigments. Phys. Chem. Chem. Phys. 2011; 13: 9253–9259. DOI: 10.1039/ c0cp02970j
  • 19. Reddy S.L., Reddy U., Reddy T.R. XRD, TEM, EPR, IR and Nonlinear Optical Studies of Yellow Ochre. J. Lasers, Opt. Photonics. 2015; 2. DOI: 10.4172/2469-410x.1000120
  • 20. Poole C.P., Farach H.A., Creswick R.J., Prozorov R. Magnetic Properties. In Superconductivity; Elsevier. 2007; 113–142.
  • 21. Chrisler V.L. Effect of paint on the sound absorption of acoustic materials. J. Res. Natl. Bur. Stand. (1934). 1940, 24, 547, DOI: 10.6028/jres.024.032
  • 22. Styp-Rekowski M., Matuszewski M., Oborsky I.L. Analysis of factors determining the quality of painting coatings on machine elements. Scientific and technical quarterly Obróbka Metalu. 2019; 2: 42–45.
  • 23. Styp-Rekowski M., Matuszewski M., Oborski, I.L. Testing of coatings as factor determining functionality of machine. Scientific and technical quarterly. Obróbka Metalu. 2019; 1: 32–35.
  • 24. Ewart Bowles P. Research and ships’ antifouling paints. Nature. 1943; 152: 159.
  • 25. Michalski M., Pisarek U., Radek N., Przybył W., Szczepaniak M. The Influence of Operational Exposure on Changes in Parameters of Effective Camouflage of Coatings Used in Military Technology. Adv. Sci. Technol. Res. J. 2023; 17: 182–196. DOI: 10.12913/22998624/156940
  • 26. Bielawski R., Grenda B. Aviation safety in terms of technological development. Copyright by Akademia Sztuki Wojennej, Warsaw 2017.
  • 27. Turner G.P.A. Introduction to Paint Chemistry and Principles of Paint Technology. Springer.
  • 28. Talbert R. Paint Technology Handbook. CRC Press 2007.
  • 29. NPCS Board of Consultants & Engineers Manufacture of Thinners & Solvents (Properties, Uses, Production, Formulation with Machinery Details). Niir Project Consultancy Services 2017.
  • 30. Weinhuber K., Auer K., Retecka A. Fundamentals of automotive painting; WKiŁ Publishing House, Warsaw 2019.
  • 31. Neumann Z., Sobierajska G. Car painting; “SIMP-ZORPOT” Centre of Appraisal and Technical Progress, Szczecin 2006.
  • 32. Blicharski M. Surface engineering. PWN Scientific Publishing House, Warsaw, 2020.
  • 33. Perera D.Y. Effect of pigmentation on organic coating characteristics. Prog. Org. Coatings. 2004, 50, 247–262. DOI: 10.1016/j.porgcoat.2004.03.002.
  • 34. Trezona R.I., Pickles M.J., Hutchings I.M. Full factorial investigation of the erosion durability of automotive clearcoats. Tribol. Int. 2000; 33: 559–571. DOI: 10.1016/S0301-679X(00)00106-7.
  • 35. Mandal A.R., Mandal S.K. Electron spin resonance in silver-doped PbS nanorods. J. Exp. Nanosci. 2010; 5: 189–198. DOI: 10.1080/17458080903464082.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bb1200ee-489b-42ec-bb07-10335418de45
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