Skip to main content
Top
Published in: Glass and Ceramics 3-4/2019

01-08-2019 | COATINGS

Liquid-Glass Radiation-Resistant Thermal-Control Coating

Authors: S. V. Tokar’, O. P. Barinova, A. I. Zakharov

Published in: Glass and Ceramics | Issue 3-4/2019

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Pigments and binders for obtaining radiation-resistant thermal-control coatings (TCC) for spacecraft were studied. A radiation-resistant thermal-control coating was obtained on the basis of the chosen components. The 15-year resistance of the coating in a geostationary orbit (GSO) was evaluated on the basis of ground-based tests. The comparative characteristics of white TCC (based on BaSO4), which are currently the most widely used coatings in Russia, are presented.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference N. V. Eremina, E. G. Avvakumov, and V. Yu. Zhelinskii, “Fireproof water glass composite based on mechanically activated alumina,” Steklo Keram., No. 2, 28 – 30 (2005); N. V. Eremina, E. G. Avvakumov, and V. Yu. Zhelinskii, “Fireproof water glass composite based on mechanically activated alumina,” Glass Ceram., 62(1 – 2), 58 – 60 (2005). N. V. Eremina, E. G. Avvakumov, and V. Yu. Zhelinskii, “Fireproof water glass composite based on mechanically activated alumina,” Steklo Keram., No. 2, 28 – 30 (2005); N. V. Eremina, E. G. Avvakumov, and V. Yu. Zhelinskii, “Fireproof water glass composite based on mechanically activated alumina,” Glass Ceram., 62(1 – 2), 58 – 60 (2005).
2.
go back to reference N. V. Eremina, E. G. Avvakumov, and V. Yu. Zhelinskii, “Properties of a flame-retardant composition based on liquid glass and mechanically activated aluminum oxide,” Zh. Prikl. Khim., 78(7), 1065 – 1069 (2005). N. V. Eremina, E. G. Avvakumov, and V. Yu. Zhelinskii, “Properties of a flame-retardant composition based on liquid glass and mechanically activated aluminum oxide,” Zh. Prikl. Khim., 78(7), 1065 – 1069 (2005).
3.
go back to reference N. V Eremina, E. G. Avvakumov, and V. Yu. Zhelinskii, “Fireproof composition based on liquid glass and mechanically activated aluminum oxide,” Khim. v Interesakh Ustoich. Razv., No. 12, 331 – 337 (2004). N. V Eremina, E. G. Avvakumov, and V. Yu. Zhelinskii, “Fireproof composition based on liquid glass and mechanically activated aluminum oxide,” Khim. v Interesakh Ustoich. Razv., No. 12, 331 – 337 (2004).
4.
go back to reference N. Yu. Mikhailenko, N. N. Klimenko, and P. D. Sarkisov, “Building materials with liquid glass binder. Part 1. Liquid glass as a binder in the production of building materials,” Tekh. Tekhnol. Silikatov, No. 4, 25 – 28 (2012). N. Yu. Mikhailenko, N. N. Klimenko, and P. D. Sarkisov, “Building materials with liquid glass binder. Part 1. Liquid glass as a binder in the production of building materials,” Tekh. Tekhnol. Silikatov, No. 4, 25 – 28 (2012).
5.
go back to reference N. Yu. Mikhailenko, N. N. Klimenko, and P. D. Sarkisov, “Building materials with liquid glass binder. Part 2. Types and forms of building materials based on liquid glass and the prospects for their development,” Tekh. Tekhnol. Silikatov, No. 5, 2 – 10 (2012). N. Yu. Mikhailenko, N. N. Klimenko, and P. D. Sarkisov, “Building materials with liquid glass binder. Part 2. Types and forms of building materials based on liquid glass and the prospects for their development,” Tekh. Tekhnol. Silikatov, No. 5, 2 – 10 (2012).
6.
go back to reference V. I. Korneev and V. V. Korneev, Liquid and Soluble Glass [in Russian], Stroiizdat, St. Petersburg (1996). V. I. Korneev and V. V. Korneev, Liquid and Soluble Glass [in Russian], Stroiizdat, St. Petersburg (1996).
7.
go back to reference F. E. Kitaichik, “Silicate facade paints. Composition and structure,” Lakokras. Mater. Ikh Primenenie, No. 4, 10 – 15 (2008). F. E. Kitaichik, “Silicate facade paints. Composition and structure,” Lakokras. Mater. Ikh Primenenie, No. 4, 10 – 15 (2008).
8.
go back to reference P. V. Rasskazov, V. V. Gorbacheva, L. I. Bushueva, and N. N. Tyutyueva, Radiation-Resistant Thermal-Control Silicate Coating for Radiators of Spacecraft Thermal-Control System Coolers, Scientific Works, Issue 3 [in Russian], FGUP GNPKKTs TsSKB-Progress, Samara (2004). P. V. Rasskazov, V. V. Gorbacheva, L. I. Bushueva, and N. N. Tyutyueva, Radiation-Resistant Thermal-Control Silicate Coating for Radiators of Spacecraft Thermal-Control System Coolers, Scientific Works, Issue 3 [in Russian], FGUP GNPKKTs TsSKB-Progress, Samara (2004).
9.
go back to reference O. N. Emel’yanova, A. N. Bolshakova, E. P. Kudryavtseva, and N. A Yashtulov, “Silicate binders for thermal-control coatings of spacecraft,” Nanotekh.: Razrabotka, Primenenie – XXI Vek, 5(2), 043 – 049 (2013). O. N. Emel’yanova, A. N. Bolshakova, E. P. Kudryavtseva, and N. A Yashtulov, “Silicate binders for thermal-control coatings of spacecraft,” Nanotekh.: Razrabotka, Primenenie – XXI Vek, 5(2), 043 – 049 (2013).
10.
go back to reference K. S. Kasaev (ed.), New High-Tech Technologies in Engineering: Encyclopedia, Vol. 16. The Impact of Space Environment on the Materials and Equipment of Spacecraft, NII ÉNTsITEKh, Moscow (2000), Chap. 1 – 4. K. S. Kasaev (ed.), New High-Tech Technologies in Engineering: Encyclopedia, Vol. 16. The Impact of Space Environment on the Materials and Equipment of Spacecraft, NII ÉNTsITEKh, Moscow (2000), Chap. 1 – 4.
11.
go back to reference Y. Gudimenko, J. I. Kleiman, Z. A. Iskanderov, et al., “Study of behaviours of the new thermal control coating EKOM-1 in flight and laboratory experiments under exposure to simulated separate and complex factors of space environment,” in: Proc. 8th Intern. Symp. on Materials in a Space Environment and 5th International. Conf. on Protection of Materials and Structures in a LEO Space Environment, Arcachon, France, June 5 – 9, 2000, Arcachon (2000). Y. Gudimenko, J. I. Kleiman, Z. A. Iskanderov, et al., “Study of behaviours of the new thermal control coating EKOM-1 in flight and laboratory experiments under exposure to simulated separate and complex factors of space environment,” in: Proc. 8th Intern. Symp. on Materials in a Space Environment and 5th International. Conf. on Protection of Materials and Structures in a LEO Space Environment, Arcachon, France, June 5 – 9, 2000, Arcachon (2000).
Metadata
Title
Liquid-Glass Radiation-Resistant Thermal-Control Coating
Authors
S. V. Tokar’
O. P. Barinova
A. I. Zakharov
Publication date
01-08-2019
Publisher
Springer US
Published in
Glass and Ceramics / Issue 3-4/2019
Print ISSN: 0361-7610
Electronic ISSN: 1573-8515
DOI
https://doi.org/10.1007/s10717-019-00142-1

Other articles of this Issue 3-4/2019

Glass and Ceramics 3-4/2019 Go to the issue

Premium Partners