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Fabrication of a Flexible Micro Temperature Sensor for Micro Reformer Applications

机译:用于微转化器的柔性微温度传感器的制造

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摘要

Micro reformers still face obstacles in minimizing their size, decreasing the concentration of CO, conversion efficiency and the feasibility of integrated fabrication with fuel cells. By using a micro temperature sensor fabricated on a stainless steel-based micro reformer, this work attempts to measure the inner temperature and increase the conversion efficiency. Micro temperature sensors on a stainless steel substrate are fabricated using micro-electro-mechanical systems (MEMS) and then placed separately inside the micro reformer. Micro temperature sensors are characterized by their higher accuracy and sensitivity than those of a conventional thermocouple. To the best of our knowledge, micro temperature sensors have not been embedded before in micro reformers and commercial products, therefore, this work presents a novel approach to integrating micro temperature sensors in a stainless steel-based micro reformer in order to evaluate inner local temperature distributions and enhance reformer performance.
机译:微型重整炉在缩小尺寸,降低CO浓度,降低转化效率以及与燃料电池集成制造的可行性方面仍然面临障碍。通过使用在不锈钢微重整器上制造的微温度传感器,这项工作试图测量内部温度并提高转换效率。使用微机电系统(MEMS)在不锈钢基板上制造微温度传感器,然后将其分别放置在微转化炉内部。微型温度传感器的特点是其精度和灵敏度高于传统热电偶。据我们所知,微型温度传感器以前尚未嵌入微型重整炉和商用产品中,因此,这项工作提出了一种将微型温度传感器集成到基于不锈钢的微型重整炉中以评估内部局部温度的新颖方法。分配并提高重整器性能。

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