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High Temperature Negative Temperature Coefficient Thermistor Material and Preparation Method Thereof

机译:高温负温度系数热敏电阻材料及其制备方法

摘要

A composite thermistor material, a preparation method and an application thereof. The perovskite structure oxide and the pyrochlorite structure oxide are composite by solid state reaction method, which comprise process of ball milling, drying, and calcining. Then the thermistor ceramics with high temperature resistance and controllable B value are sintered at high temperature after mould forming, then the thermistor disks are coated by platinum paste, and then the platinum wire is welded as the lead wire to form thermistor element. The thermistor of the invention can realize temperature measurement from room temperature to 1000° C. and has good negative temperature coefficient thermistor characteristics. The thermistor coefficient B can be adjusted by changing the two-phase ratio to meet the requirements of different systems.
机译:复合热敏电阻材料,制备方法及其应用。钙钛矿结构氧化物和红十氯化物结构氧化物是通过固态反应方法的复合材料,其包括球磨,干燥和煅烧的过程。然后,具有高耐温性和可控B值的热敏电阻陶瓷在模具成形后在高温下烧结,然后通过铂浆料涂覆热敏电阻盘,然后将铂金属焊丝作为引线焊接以形成热敏电阻元件。本发明的热敏电阻可以实现从室温到1000℃的温度测量并具有良好的负温度系数热敏电阻特性。热敏电阻系数B可以通过改变两相比来调整,以满足不同系统的要求。

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