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      (Pr, Co, Cr)-doped ZnO 바리스터의 가속열화특성에 테르비아 첨가효과 = Terbia Addition Effects on Accelerated aging Characteristics of (Pr, Co, Cr)-doped ZnO Varistors

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      https://www.riss.kr/link?id=A101056010

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      The electrical properties and stability of $ZnO-Pr_6O_{11}-CoO-Cr_2O_3-based$ varistors were investigated for different $Tb_4O_{11}$ amounts in the range of $0{\sim}1.0\;mol%$. As the $Tb_4O_{11}$ amount increased, the sintered density increased in the range of $99.1{\sim}101.1%$ of theoretical density and the average grain size decreased in the range of $7.7{\sim}4.8{\mu}m$. The varistor voltage increased in the range of $280.9{\sim}715.8V/mm$ and the nonlinear coefficient increased in the range of $26.4{\sim}44.4$ with the increased of $Tb_4O_{11}$ amount. The 0.25 mol% $Tb_4O_{11}$-doped varistors exhibited the high electrical stability, with -0.1% in variation rate of varistor voltage, -0.7% in variation rate of nonlinear coefficient, and +17.4% in variation rate of leakage current for specified dc accelerated aging stress of $0.95V_{1mA}/150^{\circ}C/24h$.
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      The electrical properties and stability of $ZnO-Pr_6O_{11}-CoO-Cr_2O_3-based$ varistors were investigated for different $Tb_4O_{11}$ amounts in the range of $0{\sim}1.0\;mol%$. As the $Tb_4O_{11}$ amount increased, the sintered density increased in th...

      The electrical properties and stability of $ZnO-Pr_6O_{11}-CoO-Cr_2O_3-based$ varistors were investigated for different $Tb_4O_{11}$ amounts in the range of $0{\sim}1.0\;mol%$. As the $Tb_4O_{11}$ amount increased, the sintered density increased in the range of $99.1{\sim}101.1%$ of theoretical density and the average grain size decreased in the range of $7.7{\sim}4.8{\mu}m$. The varistor voltage increased in the range of $280.9{\sim}715.8V/mm$ and the nonlinear coefficient increased in the range of $26.4{\sim}44.4$ with the increased of $Tb_4O_{11}$ amount. The 0.25 mol% $Tb_4O_{11}$-doped varistors exhibited the high electrical stability, with -0.1% in variation rate of varistor voltage, -0.7% in variation rate of nonlinear coefficient, and +17.4% in variation rate of leakage current for specified dc accelerated aging stress of $0.95V_{1mA}/150^{\circ}C/24h$.

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      참고문헌 (Reference)

      1 C.-W. Nahm, "ZnO-Pr6O11-CoO-Cr2O3-Er2O3 based-ceramic varistors with high stability of nonlinear properties" 21 (21): 201-, 2002

      2 L. M. Levinson, "Zinc oxide varistor-A review" 65 (65): 639-, 1986

      3 D. R. Clarke, "Varistors ceramics" 82 (82): 485-, 1999

      4 V. O. Makarov, "Sintering and electrical conductivity of doped WO3" 16 (16): 791-, 1996

      5 남춘우, "Pr6O11계 ZnO 바리스터의 DC 가속열화특성" 14 (14): 808-, 2001

      6 K. Mukae, "Nonohmic properties of ZnO-rare earth metal oxide Co3O4 ceramics" 16 (16): 1361-, 1977

      7 J.-K. Tsai, "Non-ohomic characteristics of ZnO-V2O5 ceramics" 76 (76): 4817-, 1994

      8 C.-W. Nahm, "Microstructure and electrical properties of Y2O3 doped ZnO-Pr6O11-based varistor" 57 (57): 1317-, 2003

      9 J. C. Wurst, "Lineal intercept technique for measuring grain size in two-phase polycrystalline ceramics" 97 (97): 109-, 1972

      10 C.-W. Nahm, "Influence of cooling rate on stability of nonlinear properties of ZnO-Pr6O11-based varistor ceramics" 57 (57): 1544-, 2003

      1 C.-W. Nahm, "ZnO-Pr6O11-CoO-Cr2O3-Er2O3 based-ceramic varistors with high stability of nonlinear properties" 21 (21): 201-, 2002

      2 L. M. Levinson, "Zinc oxide varistor-A review" 65 (65): 639-, 1986

      3 D. R. Clarke, "Varistors ceramics" 82 (82): 485-, 1999

      4 V. O. Makarov, "Sintering and electrical conductivity of doped WO3" 16 (16): 791-, 1996

      5 남춘우, "Pr6O11계 ZnO 바리스터의 DC 가속열화특성" 14 (14): 808-, 2001

      6 K. Mukae, "Nonohmic properties of ZnO-rare earth metal oxide Co3O4 ceramics" 16 (16): 1361-, 1977

      7 J.-K. Tsai, "Non-ohomic characteristics of ZnO-V2O5 ceramics" 76 (76): 4817-, 1994

      8 C.-W. Nahm, "Microstructure and electrical properties of Y2O3 doped ZnO-Pr6O11-based varistor" 57 (57): 1317-, 2003

      9 J. C. Wurst, "Lineal intercept technique for measuring grain size in two-phase polycrystalline ceramics" 97 (97): 109-, 1972

      10 C.-W. Nahm, "Influence of cooling rate on stability of nonlinear properties of ZnO-Pr6O11-based varistor ceramics" 57 (57): 1544-, 2003

      11 C.-W. Nahm, "Effect of sintering time on electrical properties and stability against DC accelerated aging of Y2O3-doped ZnO-Pr6O11-based varistor ceramics" 30 (30): 9-, 2004

      12 C.-W. Nahm, "Effect of sintering time on electrical characteristics and DC accelerated aging behaviors of Zn-Pr-Co-Cr-Dy oxide-based varistors" 16 (16): 2005

      13 남춘우, "Dy2O3가 첨가된 ZPCCD계 바리스터의 DC 가속열화 특성" 한국전기전자재료학회 16 (16): 2003

      14 J. Fan, "Deep level transient spectroscopy of zinc oxide varistors doped with aluminum oxide and/or silver oxide" 77 (77): 2663-, 1994

      15 M. S. Castro, "Characterization of SnO2-varistors with different additives" 18 (18): 2233-, 1998

      16 T. K. Gupta, "Application of zinc dxide varistor" 73 (73): 1817-, 1990

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