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Cell integrated thin-film multi-junction thermocouple array for in-situ temperature monitoring of solid oxide fuel cells

机译:用于型固体氧化物燃料电池的原位温度监测的电池集成薄膜多结热电偶阵列

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A thin-film multi-junction thermocouple array was developed and tested for multi-point simultaneous temperature measurements from an operating SOFC stack. The array requires only {N+1} number of wires/ thermo-elements for N number of independent temperature measuring points. Hence, it requires less number of lead wires than any available contact-temperature sensor requires for the same number of measurements. Because the multi-junction thermocouple array operates on the same principle of a conventional thermocouple, the Seebeck effect, it shares all the merits of a thermocouple. A thin-film multi-junction thermocouple array was sputter deposited on the cathode of a SOFC test cell and tested and evaluated up to 10500C from 200C. Temperature measured from the thermocouple array was compared with that from a commercial thermocouple placed adjacent to it during the test; they were in very good agreement within the entire temperature range that a SOFC stack generally operates.
机译:薄膜多结热电偶阵列开发并测试了来自操作SOFC堆叠的多点同时温度测量。该阵列仅需要n个独立温度测量点的N个独立温度测量点的{n + 1}的电线/热元件。因此,它需要少量的引线线,而不是任何可用的接触温度传感器需要相同数量的测量值。因为多结热电偶阵列采用传统热电偶的相同原理,所以它分享了热电偶的所有优点。薄膜多结热电偶阵列溅射沉积在SOFC试验细胞的阴极上并从200℃测试和评估高达1050℃。将从热电偶阵列测量的温度与在测试期间与其相邻的商业热电偶进行比较;它们在整个温度范围内非常良好的一致性,即SOFC堆栈通常运行。

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