Have a personal or library account? Click to login
Evaluation of protective properties of acrylate varnishes used for conservation of historical metal artefacts Cover

Evaluation of protective properties of acrylate varnishes used for conservation of historical metal artefacts

By: J. Švadlena and  J. Stoulil  
Open Access
|Feb 2017

References

  1. 1. Carretti, E. & Dei, L. Physic ochemical characterization of acrylic polymeric resins coating porous materials of artistic interest. Progress in Organic Coatings2004, 49, 282–289.10.1016/j.porgcoat.2003.10.011
  2. 2. Kotlik, P., Doubravova, K., Horalek, J., Kubac, L. & Akrman, J. Acrylic copolymer coatings for protection against UV rays. Journal of Cultural Heritage2014, 15 (1), 44–48.10.1016/j.culher.2013.01.002
  3. 3. Cano, E., Bastidas, D.M., Argyropoulos, V., Fajardo, S., Siatou, A., Bastidas, J.M., & Degrigny, C. Electrochemical characterization of organic coatings for protection of historic steel artefacts. Journal of Solid State Electrochemistry2010, 14(3), 453–463.10.1007/s10008-009-0907-1
  4. 4. Kapolos, J., Bakaoukas, N., Koliadima, A. & Karaiskakis, G. Evaluation of acrylic polymeric resin and small siloxane molecule for protecting cultural heritage monuments against sulfur dioxide corrosion. Progress in Organic Coatings2007, 59(2), 152–159.10.1016/j.porgcoat.2007.03.001
  5. 5. Chiantore, O. and Lazzari, M. Characterization of Acrylic Resins. International Journal of Polymer Analysis and Characterization1996, 2(4), 395–408.10.1080/10236669608033358
  6. 6. Castelvetro, V., Aglietto, M., Ciardelli, F., Chiantore, O., Lazzari, M. & Toniolo, L. Structure Control, Coating Properties, And Durability of Fluorinated Acrylic-Based Polymers. Journal of Coatings Technology2002, 74 (929), 57–66.10.1007/BF02697984
  7. 7. Miliani, C., Ombelli, M., Morresi, A. & Romani, A. Spectroscopic study of acrylic resins in solid matrices. Surface and Coatings Technology2002, 151, 276–280.10.1016/S0257-8972(01)01606-1
  8. 8. Chiantore, O. & Lazzari, M. 2 001. Photo-oxidative stability of paraloid acrylic protective polymers. Polymer2001, 42(1), 17–27.10.1016/S0032-3861(00)00327-X
  9. 9. Stoulil, J., Kopecka, A. & Fiserova, P. 2014. Adhesion of acrylate varnishes to historical metallic materials. Koroze a ochrana materialu2014, 58(3), 71–74.
  10. 10. Rohm and Haas. 2007a. Paraloid B-72 Technical data sheet. [online] [accessed 12 April 2016]. Available at: http://www.dow.com/assets/attachments/business/pcm/paraloid_b/paraloid_b-72_100_pct/tds/paraloid_b-72_100_pct.pdf
  11. 11. Rohm and Haas. 2007b. Paraloid B-48N Technical data sheet. [online] [accessed 12 April 2016]. Available at: http://www.dow.com/assets/attachments/business/pcm/paraloid_b/paraloid_b-48n_100_pct/tds/paraloid_b-48n_100_pct.pdf
  12. 12. Comyn, I. Polymer Permeability. London/New York: Elsevier Applied Science Publisher, 1985.10.1007/978-94-009-4858-7
  13. 13. Philippe, L.V.S., Lyon, S.B., Sammon, C. & Yarwood, J. 2008. Validation of electrochemical impedance measurements for water sorption into epoxy coatings using gravimetry and infra-red spectroscopy. Corrosion Science2008, 50(3), 887–896.
  14. 14. Duarte, R.G., Castela, A.S. & Ferreira, M.G.S. 2009. A new model for estimation of water uptake of an organic coating by EIS: The tortuosity pore model. Progress in Organic Coatings2009, 65(2), 197–205.
  15. 15. Castela, A.S. & Simòes, A.M. 2003. Assessment of water uptake in coil coatings by capacitance measurements. Progress in Organic Coatings2003, 46(1), 55–61.
  16. 16. Mansfeld, F. 2006. Electrochemical Impedance Spectroscopy. In: P. Marcus and F. Mansfeld, eds. Analytical methods in corrosion science and engineering, 1st ed. Boca Raton: CRC Press, pp. 463–505.
  17. 17. Prosek, T., Le Bozec, N. & Thierry, D. 2012. Application of automated corrosion sensors for monitoring the rate of corrosion during accelerated corrosion tests. Materials and Corrosion2012, 63, 1–9.
  18. 18. Kouril, M., Prosek, T., Dubus, M., Taube, M., Hubert, V., Scheffel, B., Degres, Y., Jouannic, M. & Thierry, D. 2012. Corrosion monitoring in the hands of restorers and conservators. Koroze a ochrana materialu2012, 56(3), 67–75.
  19. 19. Prosek, T., Kouril, M., Hilbert, L.R., Degres, Y., Blazek, V., Thierry, D. & Hansen, M.O. 2008. Real time corrosion monitoring in atmosphere using automated battery driven corrosion loggers. Corrosion Engineering, Science and Technology2008, 43(2), 129–133.
  20. 20. Kouril, M., Prosek, T., Scheffel, B. & Degres, Y. 2014. Corrosion monitoring in archives by the electrical resistance technique. Journal of Cultural Heritage2014, 15(2), 99–103.
  21. 21. Moreno, C., Hernandez, S., Santana, J.J., Gonzales-Guzman, J., Souto, R.M. & Gonzales, S. 2012. Characterization of Water Uptake by Organic Coatings Used for the Corrosion Protection of Steel as Determined from Capacitance Measurements. International Journal of Electrochemical Science2012, 7, 8444–8457.
DOI: https://doi.org/10.1515/kom-2017-0003 | Journal eISSN: 1804-1213 | Journal ISSN: 0452-599X
Language: English
Page range: 25 - 31
Published on: Feb 23, 2017
Published by: Association of Czech and Slovak Corrosion Engineers
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2017 J. Švadlena, J. Stoulil, published by Association of Czech and Slovak Corrosion Engineers
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.