Improvement of method of determining fireproof properties of coating and wood treatment quality

Authors

  • Юрій Володимирович Цапко Kyiv Research Institute of Forensic Expertise of Justice of Ukraine, str. Smolensk, b. 6, Kyiv, Ukraine, 03680, Ukraine https://orcid.org/0000-0001-9118-6872
  • Сергій Григорович Гузій Kyiv National University of Civil Engineering and Architecture and Science of Ukraine Povitroflotsky pr. 31, Kyiv, Ukraine, 03680, Ukraine https://orcid.org/0000-0003-0147-5035
  • Павло Васильович Кривенко Kyiv National University of Civil Engineering and Architecture and Science of Ukraine Povitroflotsky pr. 31, Kyiv, Ukraine, 03680, Ukraine https://orcid.org/0000-0001-7697-2437
  • Анастасія Володимирівна Кравченко Kyiv National University of Civil Engineering and Architecture and Science of Ukraine Povitroflotsky pr. 31, Kyiv, Ukraine, 03680, Ukraine https://orcid.org/0000-0002-8862-092X

DOI:

https://doi.org/10.15587/1729-4061.2014.23390

Keywords:

fire resistance, geocement, wood, rapid method, coating, device, temperature, surface treatment quality

Abstract

The analysis of methods of determining fireproof properties and effective wood protection was conducted. The need for developing reliable rapid methods of determining the wood treatment quality at construction projects was identified. Estimation of the maximum possible temperature penetration through the wood thickness and the method of determining the fireproof properties of the coating and wood quality by the rapid method was justified, and taking into account the conditions of constant heat and mass transfer during the tests, the device was developed. The results of determining the effectiveness of fireproof wood treatment with geocement-based coating by a standardized method showed the compliance of the1 stgroup in a two-coat application and the 2 nd group in a one-coat application. The study on determining the quality of fireproof wood treatment with geocement coating using the rapid method showed that the temperature on the reverse side for the untreated wood sample was on average 200 .C, for fireproof samples in a one-coat application − 143 .C, and in a two-coat application − 97 .C, which makes it possible to conclude about the appropriateness of applying the proposed rapid method for practical implementation.

Author Biographies

Юрій Володимирович Цапко, Kyiv Research Institute of Forensic Expertise of Justice of Ukraine, str. Smolensk, b. 6, Kyiv, Ukraine, 03680

Сand. of technical sciences

Laboratory of forensic types of research

Сергій Григорович Гузій, Kyiv National University of Civil Engineering and Architecture and Science of Ukraine Povitroflotsky pr. 31, Kyiv, Ukraine, 03680

PhD (Eng), Senior Research Scientist

V. D. Glukhovsky Scientific Research Institute for Binders and Materials

Павло Васильович Кривенко, Kyiv National University of Civil Engineering and Architecture and Science of Ukraine Povitroflotsky pr. 31, Kyiv, Ukraine, 03680

DSc (Eng), Professor

Director

Анастасія Володимирівна Кравченко, Kyiv National University of Civil Engineering and Architecture and Science of Ukraine Povitroflotsky pr. 31, Kyiv, Ukraine, 03680

PhD student

V.D. Glukhovsky Scientific Research Institute for Binders and Materials

References

  1. Романенков, И. Г. Огнезащита строительных конструкций [Текст] / И. Г. Романенков, Ф. А. Левитес. – М.: Стройиздат, 1991. – 320 с.
  2. Баженов, С. В. Контроль качества огнезащитной обработки древесины с использовнием малогабаритного прибора ПМП-1 [Текст] / С. В. Баженов, С. В. Лашкин, Ю. В. Наумов // Пожарная безопасность. – 2007. – № 2. – С. 67–71.
  3. Gusiy, S. The study of some aspects of the impact on the stability of wood protection wood structures [Text] : 1st International Conference / S. Gusiy, Yu Tsapko // Chemistry of Construction Material by the GDCh Division of Chemistry of Construction Chemicals, Berlin, 2013. – P. 209–212.
  4. Цапко, Ю. В. Влияние поверхностной обработки древесины на огнестойкость деревянных конструкций [Текст] / Ю. В. Цапко // Восточно-Европейский журнал передовых технологий. – 2013. – № 5/5 (65). – С. 11–14.
  5. Борис, О. П. Експрес-методика оцінювання вогнезахисної здатності вогнезахисних матеріалів [Текст] / О. П. Борис, А. П. Половко, Т. Б. Юзьків // Науковий вісник УкрНДІПБ.– 2012. – № 2 (26). – С. 95–99.
  6. ГОСТ 16363–98 Межгосударственный стандарт. Средства огнезащитные для древесины. Методы определения огнезащитных свойств. [Текст] / Чинний від 1989-01-01.– К., 1997.– 14 с.
  7. Krivenko, P. V. Fireproof coatings on the basis of alkaline aluminum silicate systems [Text] / P. V. Krivenko, E. K. Pushkarjeva, M. V. Sukhanevich, S. G. Guziy // Developments in Strategic Materials: Ceramic Engineering and Science Proceedings. – 2009. – Vol. 29, Issue 10. – P. 129–142.
  8. Krivenko, P. Protection of Timber from Combustion and Burning Using Alkaline Aluminosilicate-Based Coatings [Text] / P. Krivenko, S. Guzii, A. Kravchenko // Advanced Materials Research. – 2013. – Vol. 688. – Р. 39.
  9. Гузій, С. Вогнезахист деревини покриттям на основі геоцементу [Текст] : наук. зб. / С. Гузій, А. Кравченко // ІДУЦЗ. – 2013. – № 1. – С. 102–106.
  10. Petranek, V. A New thermal insulating material based on geocement [Text] / V. Petranek, S. Guzii, P. Kryvenko, A. Kravchenko, K. Sotiriadis // Advanced Materials Research. – 2014. – Vol. 838–841. – P. 183–187.
  11. ГОСТ 30219-95. Межгосударственный стандарт. Древесина огнезащищенная. Общие технические требования. Методы испытаний. Транспортирование и хранение [Текст] / Чинний від 1996-01-01. – К., 1997. – 44 с.
  12. Баженов, С. В. Способы и средства огнезащиты древесины: Руководство [Текст] / С. В. Баженов, С. Н. Булага, Л. В. Елисеева. – М.: ВНИИПО МВД РФ, 1999. – 55 с.
  13. Астапенко, В. М. Термогазадинамика пожаров в помещении [Текст] / В. М. Астапенко, Ю. А. Кошмаров и др. – М.: ВНИИПО МВД РФ, 1999. – 55 с.
  14. Молчадский, И. С. Пожар в помещении [Текст] / И .С. Молчадский. – М.: ФГУ ВНИИПО, 2005. – 456 с.
  15. Romanenkov, I. G. (1991). Ognezashhita stroitel’nyh konstrukcij. Moscow, Russia, Strojizdat, 320.
  16. Bazhenov, S. V. (2007). Kontrol’ kachestva ognezashhitnoj obrabotki drevesiny s ispol’zovniem malogabaritnogo pribora PMP-1. Pozharnaja bezopasnost’. Moscow, Russia, VNIPO, 2, 67–71.
  17. Gusiy S. (2013).The study of some aspects of the impact on the stability of wood protection wood structures. “1st International Conference on the Chemistry of Construction Material by the GDCh Division of Chemistry of Construction Chemicals. Berlin, 209–212.
  18. Tsapko, Ju. V. (2013). Vlijanie poverhnostnoj obrabotki drevesiny na ognestojkost’ derevjannyh konstrukcij. Eastern-European Journal of Enterprise Technologies, 5/5 (65), 11–14.
  19. Boris, A. (2012). Express method of evaluating fire retardant ability of fireproof materials. Naukovii visnik. Kyiv, Ukraine, UkrNDIPB, 2(26), 95–99.
  20. GOST 16363–98. Mezhgosudarstvennyj standart. Sredstva ognezashhitnye dlja drevesiny. Metody opredelenija ognezashhitnyh svojstv (1997). Kyiv, Ukraine, 14.
  21. Krivenko, P. V. (2009). Fireproof coatings on the basis of alkaline aluminum silicate systems Developments in Strategic Materials. Ceramic Engineering and Science Proceedings, Vol. 29, Issue 10, 129–142.
  22. Krivenko, P. V. (2013). Protection of Timber from Combustion and Burning Using Alkaline Aluminosilicate-Based Coatings. Advanced Materials Research, Zurich, Switzerland, Trans Tech Publications, 39.
  23. Guzіj, S. (2013). Vognezahist derevini pokrittjam na osnovі geocementu. Kyiv, Ukraine, 1, 102–106.
  24. Petranek, V. (2014). A new thermal insulating material based on geocement. Advanced Materials Research, Vol. 838–841, 183–187.
  25. GOST 30219-95. Mezhgosudarstvennyj standart. Drevesina ognezashhishhennaja. Obshhie tehnicheskie trebovanija. Metody ispytanij. Transportirovanie i hranenie (1997). Kyiv, Ukraine, 44.
  26. Bazhenov, S. V. (1999). Sposoby i sredstva ognezashhity drevesiny: Rukovodstvo. Moscow, Russia, VNIIPO MVD, 55.
  27. Astapenko, V. M. (1999). Termogazadinamika pozharov v pomeshhenii. Moscow, Russia, VNIIPO MVD, 55.
  28. Molchadskij, I. S. (2005). Pozhar v pomeshhenii. Moscow, Russia, FGU VNIIPO, 456.

Published

2014-04-15

How to Cite

Цапко, Ю. В., Гузій, С. Г., Кривенко, П. В., & Кравченко, А. В. (2014). Improvement of method of determining fireproof properties of coating and wood treatment quality. Eastern-European Journal of Enterprise Technologies, 2(11(68), 40–43. https://doi.org/10.15587/1729-4061.2014.23390

Issue

Section

Materials Science