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HEAT ACCUMULATING BLOCKS BASED ON THE PYROPHYLLITE AND THERMALLY EXPANDED GRAPHITE

Korobiichuk, Igor, Nowicki, Michal, Tolkach, Oleksandr, Melnik, Oleksandr, Szewczyk, Roman

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b12/s04.140View metrics

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  • Citations
  • CrossRef - Citation Indexes: 1
  • CrossRef - Citation Indexes: 1
  • Scopus - Citation Indexes: 1
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Publication details

Title
HEAT ACCUMULATING BLOCKS BASED ON THE PYROPHYLLITE AND THERMALLY EXPANDED GRAPHITE
Authors
Korobiichuk, Igor, Nowicki, Michal, Tolkach, Oleksandr, Melnik, Oleksandr, Szewczyk, Roman
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 16th International Multidisciplinary Scientific GeoConference SGEM2016, Science and Technologies in Geology, Exploration and Mining
Publisher
Stef92 Technology
Year
2016
Pages
1089-1096
ISSN
1314-2704
ISBN
978-619-7105-56-8
Language
en
Publication type
Conference Paper
References20
  1. Tolkach O.M., Sobolevsky R.V., Iskov S.S. Defining the criteria for quality pyrophyllite schists, Journal ZSTU, Ukraine, vol. 2/issue 57, pp 170-176, 2011.

  2. Stelmakh O.I., Matsuy L.Yu., Vovchenko L.L. Electrical resistivity of composite materials based on thermoexfoliated graphite, Journal "Physics and Chemistry of Solids State", Ukraine, vol. 8/issue 2, pp 408-413, 2007.

  3. Hutnichenko O.A., Melnyk O.L. Structure and properties of graphite -ceramic composite materials during sintering in closed forms, Journal ZSTU, Ukraine, vol. 1/issue 56, pp 3-9, 2011.

  4. Grabar I.G., Hutnichenko O.A., Kubrak Yu.O. Percolation-fractal materials: properties, technology, applications, Book, Ukraine, 2007, 354 p.

  5. Mukhopadhyay T.K., Ghatak S., Maiti H.S. Pyrophyllite as raw material for ceramic applications in the perspective of its pyro-chemical properties, Council of Scientific & Industrial Research, India , issue 36, pp 909-916, 2010.

  6. llhan A. Aksay, Daniel M. Dabbs , Mehmet Sarikaya. Mullite for Structural, Electronic, and Optical Applications, Journal of the American Ceramic Society, USA, vol. 74/issue 10, pp 2343-2358, 1991.

  7. Suriyanarayanan N., Kannan Nithin K.V., Enrico Bernardo. Mullite glass ceramics from coal ash and alumina by high temperature plasma, Journal of Non -Oxide Glasses, Iran, vol. 1/issue 4, pp 247 -260, 2009.

  8. Sanchez P.J. Thermal analysis of pyrophyllite transformation, Thermochimica Acta, Spain, issue 138, p 267-276, 1989.

  9. Joe B., Kersey R.C. The effect of firing temperature on properties of natural steatite and pyrophyllite, Journal of Material Science, USA, vol. 7/issue 6, pp 621-626.

  10. Balagurov B.Ya. About the influence of the form inclusions on the cond uctivity of two-dimensional models of composites, Technical Physics, Russia, vol. 81/issue 5, p 1-8, 2011. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

  11. Tolkach O.M., Sobolevsky R.V., Iskov S.S. Defining the criteria for quality pyrophyllite schists, Journal ZSTU, Ukraine, vol. 2/issue 57, pp 170-176, 2011.

  12. Stelmakh O.I., Matsuy L.Yu., Vovchenko L.L. Electrical resistivity of composite materials based on thermoexfoliated graphite, Journal "Physics and Chemistry of Solids State", Ukraine, vol. 8/issue 2, pp 408-413, 2007.

  13. Hutnichenko O.A., Melnyk O.L. Structure and properties of graphite -ceramic composite materials during sintering in closed forms, Journal ZSTU, Ukraine, vol. 1/issue 56, pp 3-9, 2011.

  14. Grabar I.G., Hutnichenko O.A., Kubrak Yu.O. Percolation-fractal materials: properties, technology, applications, Book, Ukraine, 2007, 354 p.

  15. Mukhopadhyay T.K., Ghatak S., Maiti H.S. Pyrophyllite as raw material for ceramic applications in the perspective of its pyro-chemical properties, Council of Scientific & Industrial Research, India , issue 36, pp 909-916, 2010.

  16. llhan A. Aksay, Daniel M. Dabbs , Mehmet Sarikaya. Mullite for Structural, Electronic, and Optical Applications, Journal of the American Ceramic Society, USA, vol. 74/issue 10, pp 2343-2358, 1991.

  17. Suriyanarayanan N., Kannan Nithin K.V., Enrico Bernardo. Mullite glass ceramics from coal ash and alumina by high temperature plasma, Journal of Non -Oxide Glasses, Iran, vol. 1/issue 4, pp 247 -260, 2009.

  18. Sanchez P.J. Thermal analysis of pyrophyllite transformation, Thermochimica Acta, Spain, issue 138, p 267-276, 1989.

  19. Joe B., Kersey R.C. The effect of firing temperature on properties of natural steatite and pyrophyllite, Journal of Material Science, USA, vol. 7/issue 6, pp 621-626.

  20. Balagurov B.Ya. About the influence of the form inclusions on the cond uctivity of two-dimensional models of composites, Technical Physics, Russia, vol. 81/issue 5, p 1-8, 2011. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

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Number of times cited according to Crossref: 1

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