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The mechanical properties of tubular solid oxide fuel cells

机译:管状固体氧化物燃料电池的机械性能

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摘要

The mechanical strength of solid oxide fuel cell (SOFC) components is one of the key issues for determining their performance and reliability. A minimum strength is required for the handling of these components in manufacturing, namely in relation to the application of the electrode or electrolyte coatings, the application of the current collection metals and the construction of the stack. Small tubular SOFCs have been found to have excellent thermal shock properties and low-cost of fabrication through traditional extrusion techniques. The mechanical integrity of the small, thin walled, tubular ceramics could be tested using traditional 3 or 4-point bending techniques, however these techniques are liable to cause failure by crushing the tube wall. Thus, a more reliable method for realizing the strength of small thin walled tubes is to pressurize the inside volume and obtain the strength value at which the tube bursts under the internal pressure. A custom burst-test instrument was constructed to obtain the average strength value of differing types of small ceramic tubes. The mechanical properties of 8 mol% yttria-stabilized zirconia (8YSZ) and NiO-YSZ tubes were investigated and are discussed. An average burst strength of 97 ± 28 MPa was observed for 8YSZ electrolyte tubes and 72 ± 23 MPa and 70 ± 16 MPa for as-sintered and reduced anode support tubes, respectively.
机译:固体氧化物燃料电池(SOFC)组件的机械强度是确定其性能和可靠性的关键问题之一。在制造过程中处理这些组件时,即与电极或电解质涂层的施加,集电金属的施加和电池组的构造有关,要求具有最小的强度。已经发现,通过传统的挤压技术,小型管状SOFC具有出色的热冲击性能和低成本。可以使用传统的三点或四点弯曲技术来测试小而薄壁的管状陶瓷的机械完整性,但是这些技术很容易因挤压管壁而引起故障。因此,实现小型薄壁管的强度的更可靠的方法是对内部容积加压并获得在内部压力下管破裂的强度值。构造了一种定制的爆破测试仪,以获取不同类型的小型陶瓷管的平均强度值。研究并讨论了8 mol%氧化钇稳定的氧化锆(8YSZ)和NiO-YSZ管的力学性能。对于8YSZ电解质管,观察到的平均破裂强度为97±28 MPa,对于刚烧结和还原的阳极支撑管,分别为72±23 MPa和70±16 MPa。

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  • 来源
    《Journal of Materials Science》 |2003年第24期|4811-4816|共6页
  • 作者

    N. M. Sammes; Yanhai Du;

  • 作者单位

    Department of Mechanical Engineering University of Connecticut;

    Connecticut Global Fuel Cell Center University of Connecticut;

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  • 正文语种 eng
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