Effect of $M_2O_3$ on the Sinterbility and Electrical Conductivity of $ZrO_2(Y_2O_3)$ System (I): Ceramics of the:$ZrO_2-Y_2O_3-Bi_2O_3$ System

$ZrO_2(Y_2O_3)$ 계 세라믹스의 소결성과 전기전도도에 대한 $M_2O_3$의 영향 (I):$ZrO_2-Y_2O_3-Bi_2O_3$계 세라믹스

  • 오영제 (한국과학기술원 무기재료연구실) ;
  • 정형진 (한국과학기술원 무기재료연구실) ;
  • 이희수 (연세대학교 요업공학과)
  • Published : 1986.03.01

Abstract

Yttria-bismuth-stabilized zirconia was investigated with respect to the amount of $Bi_2O_3$ addition in the ran-ge of 0.5~5mol% to the base composition of $(ZrO_2)_{0.92}(Y_2O_3)_{0.08}.Bismuth was introduced into the ma-terial with $Bi_2O_3-SiO_2$ glasses in order to reduce the evaporation of components. The sinterbility evaporation of components phase formation and microstructure were evaluated depending on the amount of $Bi_2O_3-SiO_2$ glass addition. Two probe A. C conductivity measurement was subjected to all the specimens and the result was discussed on the possible substitution of $Bi^{3+}$ for $Zr^{4+}$ and interistial $Si^{4+}$ in the fluorite structure of zirconia crystal there-upon the possible change in the capability of oxygen transference within the material. It was found that the addition of $Bi_2O_3$ could improve the sinterbility of material very much while not so much.oxygen sensing material suitable for relative low temperature firing.

Keywords

References

  1. Bull. Am. Ceram. Soc. v.53 no.12 Influence of SiO₂on Sintering of Partically Stabillized Zirconia J.F. Shackelford;P.S. Nicholson;W.W. Smeltzer
  2. J. Mater. Sci. v.14 Zirconia Electrolyte Cells K.C. Radford;R.J. Bratton
  3. J. Appl. Electrochem. v.2 High Oxide Ion Conduction in Sintered Bi₂O₃Containing SrO, CaO or La₂O₃ T. Takahashi;H. Iwahara;Y. Nagai
  4. J. Appl. Electrochem. v.5 High Oxide Ion Conduction in Sintered Oxides of the Ststem Bi₂O₃-Y₂O₃ T. Takahashi;H. Iwahara;T. Arao
  5. J. Appl. Electrochem. v.7 Oxide Ion Conduction in the Sintered Oxides of MoO₃-Doped Bi₂O₃ T. Takahashi;T. Esaka;H. Iwahara
  6. J. Appl. Electrochem. v.7 Conduction in Bi₂O₃-Based Oxide Ion Conductor under Low Oxygen-Pressure. Ⅰ. Current Blackening of the Bi₂O-Y₂O₃Electrolyte T. Takahashi;T. Esaka;H. Iwahara
  7. J. Appl. Electrochem. v.7 Conduction in Bi₂O₃-Based Oxide Ion Conductor under Low Oxygen-Pressure. Ⅱ. Determination of the Partial Electronic Conductivity T. Takahashi;T. Esaka;H. Iwahara
  8. J. Appl. Electrochem. v.10 Free Energy of Formation of Stabilized Bi₂O₃(FCC) from e.m.f. Measurements M.J. Verkerk;A.J. Burggraaf
  9. J. Mater. Sci. v.17 The Effect of Bi₂O₃on the Electrical and Mechanical Properties of ZrO₂-Y₂O₃Ceramics K. Keizer;A.J. Burggraaf;G. De With
  10. J. Mater. Sci. v.17 Effecr of Impurities on Sintering and Conductivity of Yttia-Stabilized Zirconia M.J. Verk;A.J.A. Winnubst;A.J. Burggraaf
  11. 본지 v.23 no.1 이트리아를 함유한 지르코니아 고체전해질의 물리적 전기적 특성 정형진;오영제
  12. 한국 공업 규격 KS L 3114
  13. J. Am. Ceram. Soc. v.52 no.8 Average Grain Size in Polycrystalline Ceramics Mel.I. Mendelson
  14. 化學センサ一その基礎と應用 淸山 哲郞;鹽川;二朗;鍈木 周一;笛水和雄
  15. Inorganic Glass-Forming System H. Rawson
  16. J. Am. Ceram. Soc. v.45 no.11 Dielectric Properties of Glass in the System Bi₂O₃-CdO-SiO₂,Bi₂O₃-CdO-BiO₃and Bi₂O₃-CdO-GeO₂and Their Relation to the Strucure of Glass Bh. V. Janakirama Rao
  17. ジルコニア セラミックス v.1 安定化ジルコニアの 電氣傅導と 酸表セソサ 齊朦 安俊
  18. J. Am. Ceram. Soc. v.58 no.11-12 Electrode Effects in the Measurement of Ionic Conductivity A.D. Franklin
  19. J. Electrochem. Soc. v.118 no.2 Platinum Electrodes and Calcia-Stabilized Zirconia R.J. Brook;W.L. Pelzmann;F.A. Kroger