Steklo i Keramika (Glass and Ceramics). Monthly scientific, technical and industrial journal

 

ISSN 0131-9582 (Online)

Autors: A. V. Belyakov
  • Continuous numbering: 991
  • Pages: 7-12
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Heading: Science for ceramic production

The introduction of nanomaterials and nanotechnology at ceramic enterprises has its own objective and subjective characteristics. It is advisable to start mastering nanotechnology with the use of nanopowder additives to existing ceramic masses, especially in the form of modifying additives. Another promising method is the production of nanoceramics from powders of unstable solid phases, in which the particle sizes are much larger than nanoscale ones, and the nanostructure is created during heat treatment during their decomposition. At the same time, all stages of ceramic technology change little. The most difficult thing seems to be the production of nanoceramics from nanopowders due to a significant change in the technology parameters. For nanocomposites, the use of negative and positive templates is promising. Il. 4
Belyakov A.V., Brygina E.A. 1998. N 10. S. 10 - 13. Belyakov AV, Brygina EA Local Compaction Areas in Sintering of Ceramics and Structural Reproducibility // Glass and Ceramics. 1998. V. 55. N 9. P. 307 - 309. Annenkov Yu.M., Aparov N.N., Sokolov V.M. et al. Strengthening of corundum-zirconium ceramics during ultrasonic compaction of ultradispersed powders // Glass and ceramics. 1994. N 11 - 12. P. 25 - 27. Annenkov Yu. M., Ivanov VV, Ivashutenko AS et al. Efficiency of various methods of pressing corundum-zirconium powders // New refractories. 2008. N 10. P. 51 - 56. Belyakov A. V. Causes of anomalous crystal growth during sintering of ceramics after the beginning of the formation of closed pores // Glass and ceramics. 2007. N 1.P. 16 - 20. Belyakov AV Causes of anomalous crystal growth in sintering ceramics after formation of closed pores began // Glass and Ceramics. 2007. V. 64.N1-2.P.17-21. Belyakov A.V., Fomin N.N., Kokh D. Influence of the size of granules on the structure of nanoporous ceramics from organosilicon polymer // Glass and Ceramics. 2003. N 1. S. 12 - 14. Belyakov AV, Fomin NN, Koch D. Effect of Granule Size on the Structure of Nanoporous Ceramic based on Organosilicon Polymers // Glass and Ceramics. 2003. V. 60.N1-2.P.14-16. Toberer ES, Lofvander JP, Seshadri R. Topochemical formation of mesoporous MnO crystals // Chem. Mater. 2006. V. 18. N 4. P. 1047-1052. Deng Z., Mao C. DNA-Templated Fabrication of 1D Parallel and 2D Crossed Metallic Nanowire Arrays // Nano Letters. 2003. V. 3. N 11. P. 1545-1548.

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A. V. Belyakov Special features of introducting nanomaterials and nanotechnologies at ceramic factories. Steklo i keramika. 2010:83(7):7-12. (in Russ). UDK 666.3-492.2