DOI QR코드

DOI QR Code

A Study on the microstructure and Surge Characteristics of ZnO varistors for distribution Arrester

배전급 피뢰기용 ZnO 바리스터 소자의 미세구조 및 서지 특성에 관한 연구

  • Published : 2002.02.01

Abstract

In this thesis, ZnO varistors with various formulation, such as A∼E, were fabricated according to ceramic fabrication method. The microstructure, electrical properties, and surge characteristics of ZnO varistors were investigated according to ZnO varistors with various formulation. In the microstructure, A∼E\`s ZnO varistor ceramics sintered at 1130$\^{C}$ was consisted of ZnO grain(ZnO), spinel phase (Zn$\_$2.33/Sb$\_$0.67/O$\_$4/), Bi-rich phase(Bi$_2$O$_3$) and intergranuler phase, wholly. Lightning impulse residual voltage of A, B, C and E\`s ZnO varistors suited standard characteristics, below 12kV at current of 5kA. On the contrary, D\`s ZnO varistor exhibited high residual voltage as high reference voltage. In the accelerated aging test, leakage current and watt loss of B, C and D\`s ZnO varistors increases abruptly with stress time under the first a.c. stress(115$\^{C}$/3.213kV/300h). Consequently, C varistor exhibited a thermal run away. On the contrary, leakage current and watt loss of A and C\`s ZnO varistors which show low initial leakage current exhibited constant characteristics. After high current impulse test, A\`s ZnO varistor has broken the side of varistor but impulse current flowed. On the contrary, E\`s ZnO Varistor exhibited good discharge characteristics which the appearance of varistor was not wrong such as puncture, flashover, creaking and other significant damage. After long duration impulse current test, E\`s ZnO varistor exhibited good discharge characteristics which the appearance of varistor was not wrong such as puncture, flashover, creaking and other significant damage. After high current impulse test and long duration impulse current test, E\`s ZnO varistor exhibited very good characteristics which variation rate of residual voltage is 1.4% before and after test.

Keywords

References

  1. 電子セラミクス 一ノ瀨?
  2. ェレクトロヒラミクス 山口 ? ほか
  3. 電氣學會技術報告 v.474 酸化亞鉛避電器の特性と評價試驗法 電氣學會
  4. 半導休ヒラミクスツ一リスとゐの應用 こコ一ケラスツ一リズ
  5. J. Appl. Phys v.46 no.3 The physics of metal oxide varistors L.M. Levinson;H.R. Philipp https://doi.org/10.1063/1.321701
  6. ES-153-261-283 전력용 피뢰기 한국전력공사
  7. JEC-217 산화아연형 피뢰기 전기학회규격
  8. Jpn. J. Appl. Phys. v.10 no.6 Nonohmic properties of zinc oxide ceramics M. Matsuoka https://doi.org/10.1143/JJAP.10.736
  9. J. Am. Ceram. Soc. Lineal intercept technique for measuring grain size in two-phase polycrystalline ceram-ics J.C. Wurst;J.A. Nelson
  10. 전기전자재료학회논문지 v.11 no.10 이트리아가 첨가된 프라세오디뮴계 산화아연 바리스터의 안정성에 관한 연구 남춘우;박춘현
  11. 전기전자재료학회논문지 v.12 no.5 ZnO 바리스터의 연속적인 DC 스트레스에 따른 노화거동 남춘우;박춘현
  12. 전기전자재료학회논문지 v.13 no.8 ZnO-Pr6O11-Er₂O₃계 바리스터의 안정성에 관한 연구 남춘우