首页> 外文期刊>Journal of Materials Science >Effect of Er2O3 addition on the microstructure, electrical properties, and stability of Pr6O11-based ZnO ceramic varistors
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Effect of Er2O3 addition on the microstructure, electrical properties, and stability of Pr6O11-based ZnO ceramic varistors

机译:添加Er2O3对Pr6O11基ZnO陶瓷压敏电阻组织,电学性能和稳定性的影响。

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摘要

The microstructure, electrical properties, and stability of Pr6O11-based ZnO varistors, which are composed of ZnO-Pr6O11-CoO-Er2O3 systems, were investigated with Er2O3 additive content. The density of ceramics was in the range of 84–88% of TD at 1300 °C and 93–98% of TD at 1350 °C, and greatly affected the stability. Most of the added-Er2O3 were segregated at nodal points. The varistors with 0.5 mol% Er2O3 sintered at 1300 °C exhibited the best nonlinear current-voltage characteristics, which the nonlinear exponent is 52.8 and the leakage current is 9.8 μA. All the varistors sintered at 1300 °C, even under relatively weak stress, exhibited the thermal runaway within short time in order of high leakage current. On the contrary, the stability of varistors sintered at 1350 °C exhibited far higher stability than that at 1300 °C. Particularly, the varistors with 0.5 mol% Er2O3 exhibited not only relatively good nonlinear current-voltage characteristics, which the nonlinear exponent is 34.8 and the leakage current is 7.4 μA, but also excellent stability, which the variation rates of varistor voltage, nonlinear exponent, and leakage current are below 1%, 3%, and 3%, respectively, even under more severe stress such as (0.80 V 1 mA/90 °C/12 h) + (0.85 V 1 mA/115 °C/12 h) + (0.90 V 1 mA/120 °C/12 h).
机译:由ZnO-Pr6 O11 -CoO-Er2 O3 组成的Pr6 O11 基ZnO压敏电阻的微观结构,电性能和稳定性/ sub>系统,用Er2 O3 添加剂含量进行了研究。陶瓷的密度在1300°C时为TD的84-88%,在1350°C时为TD的93-98%,极大地影响了稳定性。大多数添加的Er2 O3 在节点处隔离。在1300°C下烧结0.5 mol%Er2 O3 的压敏电阻表现出最佳的非线性电流-电压特性,其非线性指数为52.8,漏电流为9.8μA。即使在相对较弱的应力下,所有在1300°C烧结的压敏电阻仍会在短时间内表现出热失控,从而导致高漏电流。相反,在1350°C下烧结的压敏电阻的稳定性远高于在1300°C下烧结的压敏电阻。特别是,具有0.5 mol%Er2 O3 的压敏电阻不仅具有相对较好的非线性电流-电压特性,其非线性指数为34.8,泄漏电流为7.4μA,而且还具有出色的稳定性,其压敏电阻电压,非线性指数和漏电流的变化率分别低于1%,3%和3%,即使在更严重的压力下(例如,0.80 V 1 mA / 90°C / 12 h) +(0.85 V 1 mA / 115°C / 12小时)+(0.90 V 1 mA / 120°C / 12小时)。

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  • 来源
    《Journal of Materials Science》 |2001年第7期|1671-1679|共9页
  • 作者单位

    Department of Electrical Engineering Dongeui University;

    Department of Electrical Engineering Dongeui University;

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  • 正文语种 eng
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