首页> 外文会议>Asia Pacific Conference on Optics Manufacture; 20070111-13; Hongkong(CN) >Integration of Micro Array Sensors in the MEA on Diagnosis of Micro Fuel Cells
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Integration of Micro Array Sensors in the MEA on Diagnosis of Micro Fuel Cells

机译:MEA中集成微阵列传感器以诊断微燃料电池

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The temperature and humidity conditions of a membrane electrode assembly (MEA) determine the performance of fuel cells. The volume of traditional temperature and humidity sensors is too large to allow them to be used to measure the distribution of temperature and humidity in the MEA of fuel cells. Measurements cannot necessarily be made where required. They measure only the temperature and humidity distribution outside the fuel cells and yield results with errors that exceed those of measurements made in MEA. Therefore, in this study, micro-electro-mechanical-systems (MEMS) fabrication technology was employed to fabricate an array of micro sensors to monitor in situ the temperature and humidity distributions within the MEA of fuel cells. In this investigation, an array of micro temperature and humidity sensors was made from gold on the MEA. The advantages of array micro gold temperature and humidity sensors are their small volume, which enable them to be placed on MEA and their high sensitivity and accuracy.The dimensions of the temperature and humidity sensors are 180μm × 180μm and 180μm × 220μm, respectively. The experiment involves temperatures from 30 to 100 ℃. The resistance varied from 23.084 to 28.196 Ω. The experimental results reveal that the temperature is almost linearly related to the resistance and the accuracy and sensitivity are less than 0.3 ℃ and 3.2×10~(-3)/℃, respectively. The humidity sensor showed that the capacitance changed from 15.76 to 17.95 pF, the relative humidity from 20 to 95 %RH, and the accuracy and sensitivity were less than 0.25 %RH and 0.03 pF/%RH.
机译:膜电极组件(MEA)的温度和湿度条件决定了燃料电池的性能。传统的温度和湿度传感器的体积太大,无法用于测量燃料电池MEA中的温度和湿度分布。不一定需要进行测量。它们仅测量燃料电池外部的温度和湿度分布,并产生误差超过MEA中测量值的结果。因此,在这项研究中,采用了微机电系统(MEMS)制造技术来制造微传感器阵列,以现场监测燃料电池MEA内部的温度和湿度分布。在这项研究中,在MEA上用金制成了一系列微型温度和湿度传感器。阵列微金温湿度传感器的优点是体积小,可以放置在MEA上,并且具有很高的灵敏度和准确性。温湿度传感器的尺寸分别为180μm×180μm和180μm×220μm。实验涉及的温度为30至100℃。电阻从23.084到28.196Ω不等。实验结果表明,温度与电阻几乎成线性关系,准确度和灵敏度分别小于0.3℃和3.2×10〜(-3)/℃。湿度传感器显示电容从15.76变为17.95 pF,相对湿度从20变为95%RH,精度和灵敏度分别小于0.25%RH和0.03 pF /%RH。

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