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Dense Refractories Made from Carbidized Granules

  • SCIENTIFIC RESEARCH AND DEVELOPMENT
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Refractories and Industrial Ceramics Aims and scope

The process of obtaining dense refractory materials based on carbidized granules of kyanite ore is examined. The materials are tested in a multilayered lining on an experimental unit. Relations are found for the dependence of the temperature of the cold surface of the lining on its thickness and the dependence of the heat-flux indices and equivalent thermal conductivity on the thickness of the granular layer composed of mullite-cordierite thermal insulation.

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References

  1. O. A. Belogurova and N. N. Grishin, “Phase formation in mullite-graphite refractories,” Ogneupory i Tekh. Keram., No. 7/8, 48 – 55 (2010).

  2. O. A. Belogurova and N. N. Grishin, “Phase formation in modified mullite-bearing materials,” IV International Conference “Problems on the Efficient Use of Natural and Technogenic Raw Materials in the Barents Region to Make Structural and Engineering Materials” (June 6 – 10, 2010, Arkhangelsk). GOU VPO Arkhangelsk GTU, Arkhangelsk (2010), pp. 161 – 165.

  3. N. N. Grishin, O. A. Belogurova, A. G. Ivanova, et al., “Features of the behavior of kyanite in the pseudo-closed and pseudo-open system Al2O3–SiO2–C,” Tsvetn. Met., No. 11, 9 – 13 (2011).

  4. O. A. Belogurova, N. N. Grishin, Yu. N. Neradovskii, et al., “Carbothermic reduction of staurolite,” Ogneupory i Tekh. Keram., No. 4/5, 87 – 91 (2011).

  5. O. A. Belogurova, “Heat-resistant refractories and high-temperature heat-insulating materials made from raw materials on the Kola Peninsula,” Sever Promyshlennyi, No. 3, 25 – 27 (2011).

  6. D. Cölle, C. G. Aneziris, and S. Dudczig, “Evaluation of a carbon containing model-granules system based on loomy clay raw materials,” Proc. 49th Int. Coll. on Refractories. Stahl & Eisen Special, Aachen, 2006. pp. 97 – 99.

  7. D. Cölle, C. G. Aneziris, W. Schärfl, and S. Dudczig, “Novel alumosilicate-carbon composites for application in shaft furnaces,” Proc. UNITECR 2007, Dresden. pp. 148 – 151.

  8. W. Schärfl, D. Cölle, C. G. Aneziris, and V. Roungos, “Design and development of alumosilicate-carbon composites for application in shaft furnaces,” Proc. UNITECR 2009, Brasilia.

  9. M. Siebert, C. G. Aneziris, P. Gehre, and W. Schärfl, “Processing and development of carbon containing alumosilicate composite materials,” Proc. 53rd Int. Col. on Refractories. Stahl & Eisen Special, Aachen (2010), pp. 233 – 235.

  10. D. Cölle, C. G. Aneziris, and J. Werner, “A contribution to the characterization of the “Eisenberger Klebsand” so called “Luting Sand” as an economic resource and a sustainable raw material for refractories,” Proc. 53rd Int. Coll. on Refractories, Stahl & Eisen Special, Aachen (2011), pp. 1 – 3.

  11. C. G. Aneziris and S. Dudczig, “Carbon containing castables and more,” Advances in Science and Technology, 70, 72 – 81 (2010).

    Article  Google Scholar 

  12. V. Roungos and C. G. Aneziris, “Improved thermal shock performance of Al2O3-C refractories due to nanoscaled additives,” Ceramics International, 38(2), 919 – 927 (2011).

    Article  Google Scholar 

  13. W. Schärfl, C. G. Aneziris, U. Klippel, and V. Roungos, “Properties and processing of shaped alumosilicate-carbon composites for application in the shaft furnaces,” URL: http://www.ekw-feuerfest.de/date/documents/123425941449247.pdf.

  14. O. Krause and D. Cölle, “The impact of appropriate mixing treatment on the installation properties of unshaped refractory products,” URL: http://www.ekw-feuerfest.de/date/documents/126519553793546.pdf.

  15. D. Cölle, M. P.Wiessler, and C. G. Aneziris, “New environmentally friendly carbon bonded alumosilicate refractories: from concept to application,” URL: http://www.ekw-feuerfes.de/date/documents/1313751771127088.pdf.

  16. O. A. Belogurova and N. N. Grishin, “Carbidized heat insulation materials from kyanite ore,” Refractories and Industrial Ceramics, 53(1), 26 – 30 (2012).

    Article  Google Scholar 

  17. O. A. Belogurova, M. A. Savarina, and T. V. Sharai, “Lightweight mullite-cordierite materials from kyanite ore in the Kiev deposit,” Ogneupory i Tekh. Keram., No. 7 / 8, 72 – 77 (2013).

  18. O. A. Belogurova, M. A. Savarina, and T. V. Sharai, “Heat-resistant refractories from kyanite in Kiev deposit,” Novye Ogneupory, No. 9, 19 – 23 (2013).

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Correspondence to O. A. Belogurova.

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Translated from Novye Ogneupory, No. 5, pp. 43 – 47, May, 2015.

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Belogurova, O.A., Savarina, M.A. & Sharai, T.V. Dense Refractories Made from Carbidized Granules. Refract Ind Ceram 56, 263–266 (2015). https://doi.org/10.1007/s11148-015-9827-z

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  • DOI: https://doi.org/10.1007/s11148-015-9827-z

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