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Thermo-mechanical Reliability of SOFC Stacks During Combined Long-term Operation and Thermal Cycling

机译:组合长期运行过程中SOFC叠层的热机械可靠性和热循环

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Thermo-mechanical issues in solid oxide fuel cells (SOFC) must be understood and overcome to meet the reliability standards for market implementation. This study presents a thermo-mechanical model of an SOFC-stack SRU. The analysis starts with the simulation of stack conditioning procedures, which aims at capturing the stresses during the stack components production and assembly. The simulated stresses after the initialisation sequence provide the initial stress-state for the simulation of stack operation, which consists in importing into FEA software the temperature profiles from thermo-electrochemical simulations. The study includes long-term steady-state operation in co-flow configuration, interrupted by thermal cycling. The SRU contact pressure was found to decrease significantly after a first thermal cycle to RT, after stack qualification. Thermal cycling after long-term operation worsens the extent of loss of contact pressure at room temperature. Similarly to the evolution of contact pressure, long-term operation increases the risks of sealant failure during thermal cycling.
机译:必须理解和克服固体氧化物燃料电池(SOFC)中的热机械问题,以满足市场实施的可靠性标准。本研究介绍了SRU的SOFC叠层SRU的热机械模型。分析开始于堆栈调理程序的模拟,其旨在在堆叠部件生产和组装期间捕获应力。初始化序列后的模拟应力为堆叠操作的仿真提供了初始应力状态,这包括从热电化学模拟中导入FEA软件的温度曲线。该研究包括在循环配置中长期稳态操作,通过热循环中断。在堆栈鉴定后,发现SRU接触压力在第一热循环至室温后显着降低。长期操作后的热循环恶化在室温下接触压力的程度恶化。类似于接触压力的演变,长期操作会增加热循环期间密封剂失效的风险。

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