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Effect of Contact Method between Interconnects and Electrodes on Area Specific Resistance in Planar Solid Oxide Fuel Cells

机译:互连电极之间的接触方式对平面固体氧化物燃料电池比电阻的影响

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摘要

In this work, interconnect/electrode sheet/interconnect sandwiches are assembled by designing interfacial contact between interconnects and electrodes for planar solid oxide fuel cells (SOFCs). Their area specific resistance (ASR) values of different contact methods under isothermal oxidation and thermal cycling are recorded by four-point method. The ASR of SUS430/Ni-YSZ/SUS430 anode sandwich with NiO current collecting layer is close to that of anode sandwich without NiO current collecting layer during isothermal operation, but smaller and more stable during thermal cycling. Meanwhile, the lowest ASR is obtained in SUS430/LSM-YSZ/SUS430 cathode sandwich with LSM coated interconnect and LSM current collecting layer among various contact methods between interconnects and cathodes, and remains constant under isothermal oxidation and thermal cycling. Contact resistance between cathodes and interconnects is the main source of the SOFC stack resistance. A real stack with three anode-supported cells is assembled and tested under thermal cycling to verify the effect of different contact methods between interconnects and electrodes on performance of stack repeating unit. The degradation rate and ASR values of repeating unit inside the stack indicate that the contact between LSM coated interconnect and LSM current collecting layer on cathode side is the optimized contact.
机译:在这项工作中,通过设计平面固体氧化物燃料电池(SOFC)的互连件和电极之间的界面接触来组装互连件/电极片/互连件三明治。通过四点法记录了在等温氧化和热循环条件下不同接触方式下它们的面积比电阻(ASR)值。在等温运行期间,带有NiO集流层的SUS430 / Ni-YSZ / SUS430阳极夹层的ASR接近于没有NiO集流层的阳极夹层的ASR,但在热循环过程中更小且更稳定。同时,在互连线和阴极之间的各种接触方法中,具有LSM涂层互连线和LSM集流层的SUS430 / LSM-YSZ / SUS430阴极三明治中获得的最低ASR,并且在等温氧化和热循环下保持恒定。阴极和互连之间的接触电阻是SOFC堆栈电阻的主要来源。组装具有三个阳极支撑电池的真实电池堆,并在热循环下进行测试,以验证互连件和电极之间不同接触方法对电池堆重复单元性能的影响。堆叠内部重复单元的降级速率和ASR值表明,LSM涂层互连和阴极侧LSM集流层之间的接触是最佳接触。

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