一种新型金属氧化物压敏电阻材料热制造参数的实验改进

B. Filip, Flaviu Mihai Frigura-Iliasa, D. Vatau, M. Frigura-Iliasa, P. Andea, Ionel FlorinBalcu
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引用次数: 1

摘要

保护任何敏感的电气或电子设备防止意外过电压的发生(主要是适用于电网的雷击)是电力电子领域的一个持续关注。作为执行该操作的主要部件,性能最好、最可靠的器件是金属氧化物压敏电阻(MOV或ZnO)避雷器。这些复杂的器件是陶瓷材料,包括不同的金属氧化物,主要是氧化锌(ZnO,质量百分比约为90%)。这些电子器件只有通过修改其制造工艺或引入其他新的添加剂才能更好地工作,这些添加剂可以改善陶瓷半导体材料的电气参数,特别是在所施加的电压和它们的响应之间的非线性依赖关系。本文主要是基于一个经验过程,该过程仅通过修改一些热参数即可传导到新的半导体材料。本文将描述两种新构思的压敏材料,只有2种和5种主要掺杂(添加剂),烧结温度对其主要电性能的影响。
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Experimental Improvements Concerning the Thermal Manufacturing Parameters of a new Metal Oxide Varistor Material
Protection of any sensitive piece of electric or electronic equipment against accidental overvoltage occurrence (mostly lightning strokes applied to power networks) is a constant concern for the power electronics domain. The most performant and reliable devices, used as main components to perform this operation, are Metal Oxide Varistors (MOV, or ZnO) surge-arresters. These complex devices are ceramic materials, including different metal oxides, mostly Zinc Oxide (ZnO, around 90% in mass percentage). These electronic devices can work better only if modifying their manufacturing process or by introducing other new additives, which can improve the electrical parameters of the ceramic semi-conductor material, especially on the non-linear dependence between the applied voltage and their response as resulting crossing current. This article is based mostly on an empirical process which can conduct to new semiconductor materials, by modifying some thermal parameters only. This article will describe the influence of the sintering temperature over the main electrical properties, for two newly conceived varsitor materials, only 2 and only 5 main dopants (additives).
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