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FUEL CELL SYSTEM RELIABILITY FOR A PRESSURISED INTEGRATED-PLANAR SOFC

机译:加压集成平面SOFC的燃料电池系统可靠性

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摘要

A ceramic supported SOFC for operation at 950℃ is being developed by Rolls Royce Fuel Cell Systems (RRFCS). In parallel with the evolving design of the fuel cell system, it is necessary to ensure reliability not only of the electrochemical cell, but also the main structure under both manufacture and operational constraints. With a ceramic based system for use at high temperature this presents particular challenges, and to address these, RRFCS is in partnership with leading academic institutions including Imperial College London and the University of Genoa supported by the European Union. This paper will identify potential areas of concern for reliability and integrity of the fuel cell system, and will indicate the work that is being undertaken to ensure reliability, including thermomechanical stresses arising from fluid flow, electrochemical reactions and operational temperature distributions; joining of components; assessment of the stresses within ceramic structures, manufacture tolerances of dimensions and material properties.
机译:劳斯莱斯燃料电池系统(RRFCS)正在开发一种陶瓷支撑的SOFC,可在950℃下运行。在燃料电池系统不断发展的设计的同时,不仅要确保电化学电池的可靠性,而且还要在制造和操作约束下确保主要结构的可靠性。对于在高温下使用的陶瓷基系统,这提出了特殊的挑战,为了解决这些问题,RRFCS与领先的学术机构合作,包括伦敦帝国学院和由欧盟支持的热那亚大学。本文将确定可能引起关注的燃料电池系统可靠性和完整性的领域,并指出正在进行的确保可靠性的工作,包括由流体流动,电化学反应和工作温度分布引起的热机械应力;组件的连接;评估陶瓷结构内的应力,尺寸和材料性能的制造公差。

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