Preview

Industrial laboratory. Diagnostics of materials

Advanced search

Study of intumescent coatings in operation using x-ray phase and thermal analysis and IR spectroscopy

https://doi.org/10.26896/1028-6861-2020-86-3-25-31

Abstract

The problem of increasing the fire resistance of buildings and structures is still relevant. Nowadays, fireproof intumescent and other materials with a limited service life are used to ensure fire safety of infrastructure and social facilities. Among these, fire-proofing of metal structures is one of the vital problems. The results of studying samples of fire-retardant intumescent coatings based on ammonium polyphosphate-melamine-pentaerythritol and subjected to artificial climatic aging (3, 6, and 9 years) and thermal exposure (heating to 300 and 500°C) are presented. The methods of X-ray diffraction and thermal analyzes, optical and IR spectroscopy are used to study the phase and structural composition of materials. It was found that the intumescence of the samples significantly decreases during service life of the coating. This leads to a decrease in the fire resistance of the protected object. Moreover, a sharp change in the phase composition of materials occurs as a result of aging and heating, accompanied by a decrease in the degree of crystallinity. Since the composition of fire-retardant coatings plays a key role in ensuring the fire safety of buildings and structures, the results of the study can be used for timely detection of violations in the quality of coatings and forecasting their service life.

About the Authors

M. Yu. Umrikhina
Testing Fire Laboratory
Russian Federation

Marina Yu. Umrikhina

6, ul. Penkovaya, St. Petersburg, 197046



T. O. Shorokhova
Testing Fire Laboratory
Russian Federation

Tatyana O. Shorokhova

6, ul. Penkovaya, St. Petersburg, 197046



S. V. Utkin
Testing Fire Laboratory
Russian Federation

Sergey V. Utkin

6, ul. Penkovaya, St. Petersburg, 197046



L. A. Pyankova
Nauchnye pribory, JSC
Russian Federation

Lyubov A. Pyankova

26, Rizhsky pr., St. Petersburg, 190103



L. Yu. Krasnova
Nauchnye pribory, JSC
Russian Federation

Larisa Yu. Krasnova

26, Rizhsky pr., St. Petersburg, 190103


References

1. Smirnov N. V., Duderov N. G., Bulaga S. N., et al. Assessment of fireproof properties of coverings depending on terms of their operation: technique. — Moscow: VNIIPO, 2016. — 31 p. [in Russian].

2. Nenakhov S. A., Pimenova V. P., Nateykina L. I. Influence of Fillers on the Structure of Foam Coke Based on Ammonium Polyphosphate / Pozharovzryvobezopasnost’. 2009. N 7. P. 51 – 60 [in Russian].

3. Lomakin S. M., Zaikov G. E. Combustion moderators for polymers / Йntsiklopediya inzhenera-khimika. 2011. N 9 [in Russian].

4. Camino G., Lomakin S. Fire retardant materials. —- Cambridge: CRC Press and Woodhead Publishing, 2001.

5. Polyakova V. I., Zybina O. A. Influence of titanium dioxide characteristics on fire-retardant efficiency of coke-forming protective coatings / III International Scientific and Technical Conference: theses of reports. — St. Petersburg: SPbGIKiT, 2016. P. 37 – 38 [in Russian].

6. Pavlovich A. V., Vladenkov V. V., et al. Flame retardant bulging coatings / Lakokras. Promyshl. 2012. N 5. P. 22 – 27 [in Russian].

7. Zybina O. A., Yakunina I. E., Babkin O. E., et al. Specific reactions of ingredients in flame retardant expandable paint compositions / Lakokras. Mater. Ikh Primen. 2014. N 12. P. 30 – 33 [in Russian].

8. Nenakhov S. A., Pimenova V. P. Influence of the concentration of the gaseous agent on the patterns of development of the foam of fire retardant compositions / Pozharovzryvobezopasnost’. 2010. Vol. 19. N 3. P. 14 – 25 [in Russian].

9. Bazhenov S. V., Naumov Yu. V., Motina L. V. Determination of heat-insulating properties of flame-retardant coatings on metal. — Moscow: VNIIPO, 1998. — 19 p. [in Russian].

10. Coptug V. A. (ed.) Infrared spectra of paint coatings of motor vehicles. — Novosibirsk, 1987. — 203 p. [in Russian].

11. Bellamy L. Infrared spectra of complex molecules. — Moscow: Inostrannaya literatura, 1963. — 201 p. [Russian translation].

12. Cross A. Introduction to practical infrared spectroscopy. — Moscow: Inostrannaya literatura, 1961. — 110 p. [Russian translation].

13. Xingyou Chen, Yinghong Chen. Synthesis of a hydrogen-bonded complex intumescent flame retardant through supramolecular complexation and its application in LDPE foam / Royal Society of Chemistry. 2017. N 7. P. 31298 – 31309.

14. Smirnov N. V., Bulaga S. N., Duderov N. G. Estimation of the permissible life of thin-layer fire-retardant coatings in different climatic conditions: methodology. — Moscow: VNIIPO, 2015. — 38 p. [in Russian].

15. Nenakhov S. A., Pimenova V. P. Physical chemistry of foaming flame retardant coatings based on ammonium polyphosphate / Pozharovzryvobezopasnost’. 2010. Vol. 19. N 8. P. 11 – 58 [in Russian].


Review

For citations:


Umrikhina M.Yu., Shorokhova T.O., Utkin S.V., Pyankova L.A., Krasnova L.Yu. Study of intumescent coatings in operation using x-ray phase and thermal analysis and IR spectroscopy. Industrial laboratory. Diagnostics of materials. 2020;86(3):25-31. (In Russ.) https://doi.org/10.26896/1028-6861-2020-86-3-25-31

Views: 534


ISSN 1028-6861 (Print)
ISSN 2588-0187 (Online)