Guk Erdogan, Venkatesan Vijay, Sayan Yunus, Jackson Lisa, Kim Jung-Sik
Aeronautical & Automotive Engineering Department, Loughborough University, Loughborough, LE11 3TU, United Kingdom.
Bozok Üniversitesi Mühendislik-Mimarlık Fakültesi Erdoğan AKDAĞ Kampüsü Atatürk Yolu 7. km, Yozgat, Turkey.
Sci Rep. 2019 Feb 15;9(1):2161. doi: 10.1038/s41598-019-39518-2.
Thermal management of SOFCs (solid oxide fuel cell) is important for helping to minimise high temperature-related performance losses and maximising cell/stack lifetime. Thin film sensor technology is proposed as an excellent candidate to measure the cell temperature during operation due to its negligible mass, minimal disturbance to normal operation and higher temporal and spatial resolutions. However, the effective application of such sensors in SOFC systems is a challenging endeavour and predicated on incorporating the external wire attachments to complete the electrical circuit. This is because of the high sensitivity of SOFC materials to any interference to operation, limited available space and harsh operating conditions. In this paper, a new concept of packaging external wire attachments to the thin film sensor is described to enable the integration of the sensor in the SOFC system. Temperature measurements have been monitored under OCV and operating condition with the thin film sensor directly from SOFC cathode surface via proposed spring-based wire connection, from room temperature to SOFC operating temperature. The impact of the parameters including contact resistance (Rc) between sensor pads and attached wire on monitored temperature has also been analysed with the contribution of conductive paste. High temporal and spatial resolutions have been obtained with the implemented sensor.
固体氧化物燃料电池(SOFC)的热管理对于尽量减少与高温相关的性能损失以及最大化电池/电堆寿命至关重要。薄膜传感器技术因其质量可忽略不计、对正常运行的干扰最小以及具有更高的时间和空间分辨率,被认为是在运行期间测量电池温度的理想选择。然而,此类传感器在SOFC系统中的有效应用是一项具有挑战性的工作,且依赖于连接外部导线以完成电路。这是由于SOFC材料对任何运行干扰高度敏感、可用空间有限以及运行条件恶劣。本文描述了一种将外部导线连接到薄膜传感器的新型封装概念,以使传感器能够集成到SOFC系统中。通过所提出的基于弹簧的导线连接方式,在开路电压(OCV)和运行条件下,直接从SOFC阴极表面使用薄膜传感器对温度进行了监测,监测范围从室温到SOFC运行温度。还分析了包括传感器焊盘与连接导线之间的接触电阻(Rc)等参数对监测温度的影响以及导电胶的作用。所实施的传感器获得了高时间和空间分辨率。