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THERMOELECTRIC PROPERTIES OF CERAMIC THIN FILM THERMOCOUPLES

机译:陶瓷薄膜热电偶的热电性质

摘要

Thin film ceramic thermocouples are used to assess temperatures beyond 14000C in the hot sections of gas turbine engines. Several ceramic materials were systematically examined as thermoelements including indium tin oxide (ITO), zinc oxide (ZnO) and a NiCrCoAlY/alumina nanocomposite. These ceramic thermoelements were initially tested relative to a platinum reference electrode and the relationship between process parameters and thermoelectric properties, including Seebeck coefficient, sensitivity and voltage/temperature behavior was established. Bi-ceramic junctions comprised of ZnO and ITO generated a very large electromotive force at low temperatures but lacked high temperature stability. When ITO was combined with a NiCoCrAlY/alumina nanocomposite, a very large Seebeck coefficient with excellent emf/temperature behavior was realized. A ceramic thermocouple based on this combination was demonstrated at temperatures up to 1200°C.
机译:薄膜陶瓷热电偶用于评估燃气轮机发动机热区中超过14000C的温度。系统地检查了几种陶瓷材料作为热电偶,包括氧化铟锡(ITO),氧化锌(ZnO)和NiCrCoAlY /氧化铝纳米复合材料。最初相对于铂参比电极测试了这些陶瓷热电偶,并建立了工艺参数与热电特性(包括塞贝克系数,灵敏度和电压/温度行为)之间的关系。由ZnO和ITO组成的双陶瓷结在低温下产生很大的电动势,但缺乏高温稳定性。当ITO与NiCoCrAlY /氧化铝纳米复合材料结合使用时,可以实现非常大的塞贝克系数,并且具有优异的电动势/温度行为。基于此组合的陶瓷热电偶在高达1200°C的温度下得到了证明。

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