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Dielectric Properties of Triaxial Porcelain Prepared Using Raw Native Materials Without Any Additions

Year 2014, Volume: 2 Issue: 3, 128 - 131, 01.09.2014

Abstract

— in this study, production of porcelain, for the ceramic dielectric applications by using inexpensive natural raw materials or waste materials was undertaken. The principal raw materials of porcelain, such as kaolin, feldspar, and quartz, are relatively inexpensive and readily available. The raw materials used in this study were collected from Algerian source (Kaolin was from Debagh deposit, Quartz from El Oued city and Feldspar from Ain Barbar deposit). The basic electro-porcelain composition was selected consisting of 37% kaolin, 35% potash-feldspar and 28% quartz. The samples synthesized were characterized by be obtained in other materials. Today, the growing demand for X-ray diffraction (XRD) technique. The dielectric properties of porcelain bodies prepared without porcelain in the field of electrical engineering, caused by the

References

  • Z. V. Kolpashchikova, E. V. Shcherbakova, N. S. Kostyukov, “Polarization processes in electrotechnical porcelain within a wide frequency range”, Glass and Ceram., vol. 60, no.11-12, pp.370-373, 2003.
  • L.U ANIH, “Characterization of Locally Sourced Kaolin-Feldspar- Quartz Triaxial Porcelain for Insulation Applications”, Electric Power Engineering Conference (EPEC), June 2005.
  • J.M.Amigo, J.V. Clause, E. Vicente, J. M. Delgado, M. M. Revento, L. E. Ochando, T. Debaerdemaeker, F. Martı, “X-ray powder diffraction phase analysis and thermomechanical properties of silica and alumina porcelains”, J. of the Eur. Ceram. Soc., vol. 24, no.1, pp.75-81, 2004.
  • S.P. Chaudhuri, P. Sarkar, A.K. Chakraborty, “Electrical resistivity of porcelain in relation to constitution”, Ceram. Inte. vol. 25, no.1 pp.91- 99, 1999.
  • A. S. Demirkiran, R. Artir, E. Avci, “Electrical resistivity of porcelain bodies with natural zeolite addition”, Ceram. Inter. vol. 36, no.3, pp.917- 921, 2010.
  • S.J. Hwang, Y.J. Kim, H.S. Kim, “La2O3–B2O3–TiO2 Glass/BaO– Nd2O3–TiO2 ceramic for high quality factor low temperature co-fired ceramic dielectric”, J Electro. Ceram., vol. 18, no.1-2, pp.121-128, 2007.
  • V. Tmovcova, I. Fura, F. Hanic,” Influence of technological texture on electrical properties of industrial ceramics”, J. of Phys. and Chem. of Sol. vol.68, no.5-6, pp.1135-1139, 2007. [8] Ying-Chieh
  • Lee, “Dielectric Properties and Reliability of
  • Zn0.95Mg0.05TiO3+0.25TiO2 MLCCs with Different Pd/Ag Ratios of
  • Electrodes”, Int. J. Appl. Ceram. Technol.,vol. 7, no.1, pp.71-80, 2010.
  • H. M. El-Malah, N. A. Hegab, Studies on a.c. properties of Ca1–xSrxTiO3 perovskites, J. Mater. Sci. vol.42, no.1, pp.332-336, 2007.
  • G.B. Kumar, K. Sivaiah, S. Buddhudu, “Synthesis and characterization of ZnWO4 ceramic powder”, Ceram. Inter. vol.36, no.1, pp.199-202, 2010.
  • S.Kitouni, A. Harabi,” Sintering and mechanical properties of porcelains prepared from Algerian raw materials”, Cerâmica, vol.57, no.344, pp.453-460, 2011.
  • V.P. Il’ina, “Feldspar material from Karela for electrical engeneering”, Glass and Ceram., vol.61, no.5-6, pp.195-197, 2004
  • R.A. Islam, Y.C. Chana, M. F. Islam, “Structure–property relationship in high-tension ceramic insulator fired at high temperature”, Mat. Sci. and Eng. vol.B106, no.2, pp.132-140, 2004.
  • V. Viswabaskaran, F.D. Gnanam, M. Balasubramanian, “Mullite from clay–reactive alumina for insulating substrate application”, Applied Clay Sci. vol.25, no.1-2, pp.29-35, 2004.
Year 2014, Volume: 2 Issue: 3, 128 - 131, 01.09.2014

Abstract

References

  • Z. V. Kolpashchikova, E. V. Shcherbakova, N. S. Kostyukov, “Polarization processes in electrotechnical porcelain within a wide frequency range”, Glass and Ceram., vol. 60, no.11-12, pp.370-373, 2003.
  • L.U ANIH, “Characterization of Locally Sourced Kaolin-Feldspar- Quartz Triaxial Porcelain for Insulation Applications”, Electric Power Engineering Conference (EPEC), June 2005.
  • J.M.Amigo, J.V. Clause, E. Vicente, J. M. Delgado, M. M. Revento, L. E. Ochando, T. Debaerdemaeker, F. Martı, “X-ray powder diffraction phase analysis and thermomechanical properties of silica and alumina porcelains”, J. of the Eur. Ceram. Soc., vol. 24, no.1, pp.75-81, 2004.
  • S.P. Chaudhuri, P. Sarkar, A.K. Chakraborty, “Electrical resistivity of porcelain in relation to constitution”, Ceram. Inte. vol. 25, no.1 pp.91- 99, 1999.
  • A. S. Demirkiran, R. Artir, E. Avci, “Electrical resistivity of porcelain bodies with natural zeolite addition”, Ceram. Inter. vol. 36, no.3, pp.917- 921, 2010.
  • S.J. Hwang, Y.J. Kim, H.S. Kim, “La2O3–B2O3–TiO2 Glass/BaO– Nd2O3–TiO2 ceramic for high quality factor low temperature co-fired ceramic dielectric”, J Electro. Ceram., vol. 18, no.1-2, pp.121-128, 2007.
  • V. Tmovcova, I. Fura, F. Hanic,” Influence of technological texture on electrical properties of industrial ceramics”, J. of Phys. and Chem. of Sol. vol.68, no.5-6, pp.1135-1139, 2007. [8] Ying-Chieh
  • Lee, “Dielectric Properties and Reliability of
  • Zn0.95Mg0.05TiO3+0.25TiO2 MLCCs with Different Pd/Ag Ratios of
  • Electrodes”, Int. J. Appl. Ceram. Technol.,vol. 7, no.1, pp.71-80, 2010.
  • H. M. El-Malah, N. A. Hegab, Studies on a.c. properties of Ca1–xSrxTiO3 perovskites, J. Mater. Sci. vol.42, no.1, pp.332-336, 2007.
  • G.B. Kumar, K. Sivaiah, S. Buddhudu, “Synthesis and characterization of ZnWO4 ceramic powder”, Ceram. Inter. vol.36, no.1, pp.199-202, 2010.
  • S.Kitouni, A. Harabi,” Sintering and mechanical properties of porcelains prepared from Algerian raw materials”, Cerâmica, vol.57, no.344, pp.453-460, 2011.
  • V.P. Il’ina, “Feldspar material from Karela for electrical engeneering”, Glass and Ceram., vol.61, no.5-6, pp.195-197, 2004
  • R.A. Islam, Y.C. Chana, M. F. Islam, “Structure–property relationship in high-tension ceramic insulator fired at high temperature”, Mat. Sci. and Eng. vol.B106, no.2, pp.132-140, 2004.
  • V. Viswabaskaran, F.D. Gnanam, M. Balasubramanian, “Mullite from clay–reactive alumina for insulating substrate application”, Applied Clay Sci. vol.25, no.1-2, pp.29-35, 2004.
There are 16 citations in total.

Details

Primary Language English
Journal Section Reviews
Authors

S. Kitouni This is me

Publication Date September 1, 2014
Published in Issue Year 2014 Volume: 2 Issue: 3

Cite

APA Kitouni, S. (2014). Dielectric Properties of Triaxial Porcelain Prepared Using Raw Native Materials Without Any Additions. Balkan Journal of Electrical and Computer Engineering, 2(3), 128-131.

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