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New manufacturing process for the metal oxide varistors used on low voltage surge-arresters

机译:低压电涌放电器上使用的金属氧化物压敏电阻的新制造工艺

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摘要

The effective protection of each type of sensible electronic piece of equipment against any type of over voltage (including direct or indirect lightning applied on power supply) is a big issue for power system specialists. Some of the most reliable electronic devices used in order to protect against overvoltages are all voltage metal oxide varistor based surge-arresters. These varistors are produced starting from a thick mixture of different metal oxides, where the main component (more than 80-90% as mass percentage) is ZnO. New improvements for these devices could be performed only by taking in consideration their mass production process, by placing different additives, having specific influences on the electrical and thermal behavior of the semiconductor material, mostly on their non-linear relation between the voltage applied and the current response as well as on their heat absorption capability. In literature there is no physical or mathematical model in order to assess the role of each dopant (additive) on the main characteristics. This is an experimental process which insures to the development of new semiconductor materials. This article will present a new manufacturing process (temperature and explain the influence of the sintering temperature on the electrical properties of two varsitor materials, with 2 and 5 additives.
机译:对于电力系统专家而言,有效保护每种类型的敏感电子设备免受任何类型的过电压(包括施加在电源上的直接或间接雷电)是一个很大的问题。为了防止过电压而使用的一些最可靠的电子设备都是基于电压金属氧化物压敏电阻的电涌放电器。这些变阻器由不同金属氧化物的浓混合物开始生产,其中主要成分(以质量百分比计,大于80-90%)为ZnO。这些设备的新改进只能通过考虑其批量生产过程,放置不同的添加剂来进行,这些添加剂对半导体材料的电和热行为具有特定影响,主要影响它们施加的电压与半导体材料之间的非线性关系。电流响应及其吸热能力。在文献中,没有物理或数学模型可以评估每种掺杂剂(添加剂)在主要特性上的作用。这是一个实验过程,可确保开发新的半导体材料。本文将介绍一种新的制造工艺(温度,并说明烧结温度对两种含2和5添加剂的varsitor材料的电性能的影响。

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