...
【24h】

Boron and sodium co-doped ZnO varistor with high stability of pulse current surge

机译:硼和钠掺杂ZnO压敏电阻具有高稳定性的脉冲电流浪涌

获取原文
获取原文并翻译 | 示例
           

摘要

AbstractThe effect of boron and sodium co-doping on the stability of ZnO varistors subjected to large pulse-current surges was investigated. The relationship among the microstructure, phase composition, electric properties and pulse-current aging behavior were systematically discussed. No additional phase is generated with the co-doping of boron and sodium ions. The energy dispersive spectroscopy (EDS) analysis confirms that sodium ions can permeate into the grains and occupy the interstitial sites, while the boron ions stay at the grain boundary to form glass phase and decrease the concentration of the interstitial defect. Moreover, the co-doping behavior leads to a trend that the grain size increases firstly and then decrease, which is the main reason for the change in the breakdown field (E1mA/cm2). The result reveals that with 0.24?mol% B3+,E1mA/cm2increases to a maximum value of 4187?V/cm and then decreases drastically with increasing content of Na+dopant from 0.12 to 0.48?mol%. Meanwhile, the nonlinear coefficient of the samples decreases and the leakage current increases with the increase of Na+content. The varistor doped with 0.24?mol% Na+and 0.24?mol% B3+exhibits the optimumI-Vstability. After subjecting to a surge current of 6000 A, the variation rate of the breakdown field (%ΔE1mA/cm2) is??2.6%, which is almost five times lower than that of the sample without boron and sodium. In addition, the ZnO varistor with the B/Na ratio of 0.24/0.24 shows much better stability compared to the samples added with B3+or Na+singly. The finding of this study provides an effective method for improving the protective effect of surge protection equipment and the stability of power systems.Highlights?The B and Na co-doping effect on ZnO varistors have been investigated.?With B and Na doping, the variation rate has been improved for 4 times.?The co-doped sample exhibits a very stableI-Vcharacteristic.]]>
机译:<![CDATA [ 抽象 硼和共掺杂的效果对经受大脉冲电流浪潮的ZnO变阻器的稳定性的影响调查。系统地讨论了微观结构,相组合物,电性能和脉搏老化行为之间的关系。通过硼和钠离子的共掺杂产生另外的相。能量色散光谱(EDS)分析证实钠离子可以渗透到晶粒中并占据间隙位点,而硼离子停留在晶界以形成玻璃相并降低间质缺陷的浓度。此外,共掺杂行为导致晶粒尺寸首先增加的趋势,然后减少,这是击穿场变化的主要原因( e 1ma / cm 2 )。结果表明,用0.24?mol%b 3 + e 1mA / cm 2 增加到最大值为4187?v / cm,然后随着Na + 掺杂剂从0.12到0.48?mol%。同时,样品的非线性系数降低,漏电流随着Na + 含量的增加而增加。压敏电阻掺杂有0.24摩尔%Na + 和0.24摩尔%b 3 + 展示最佳 IV 稳定性。在经过6000a的浪涌电流之后,击穿场的变化率(%Δ e 1ma / cm 2 )是?? 2.6%,而没有硼和钠的样品几乎五倍。另外,与添加的样品相比,具有0.24 / 0.24的B / Na比的ZnO变阻器与B 3 + 或NA + 单独。该研究的发现提供了一种有效的方法,可提高电涌保护设备的保护效果和电力系统的稳定性。 突出显示 ?< / ce:标签> 已经研究了对ZnO变阻器的B和Na共掺杂效果。 < CE:列表项ID =“U0015”> 具有B和NA掺杂,变化率已经提高4次。 共掺杂样品EXH Ibits一个非常稳定的 i - v 特征。 ]]>

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号