首页> 外文期刊>Ceramic Engineering and Science Proceedings >FINITE ELEMENT ANALYSIS OF THE BONDED COMPLIANT SEAL DESIGN - A NEW SEALING CONCEPT FOR USE IN PLANAR SOLID OXIDE FUEL CELLS
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FINITE ELEMENT ANALYSIS OF THE BONDED COMPLIANT SEAL DESIGN - A NEW SEALING CONCEPT FOR USE IN PLANAR SOLID OXIDE FUEL CELLS

机译:粘接合规密封设计的有限元分析-用于平面固体氧化物燃料电池的新密封概念

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摘要

A key issue in developing commercially viable planar solid oxide fuel cell stacks is appropriate seal design. We are currently developing an alternative approach to rigid and compressive seal designs that conceptually combines advantages of both techiques, including henneticity, mechanical integrity, and minimization of interfacial stresses in either of the joint substrate materials, particulary the ceramic. The new seal relies on a plastically deformable metal seal; one that offers a quasi-dynamic mechanical response in that it is adherent to both sealing surfaces, i.e. non-sliding, but readily yields or deforms under thermally generated stresses. In this way, we hope to mitigate the development of stresses in the adjacent ceramic and metal components even when a significant difference in thermal expansion exists between the two materials. Here we employ finite element modeling to assess the potential thermal cycling performance of this design, specifically as it pertains to sealing components with vastly different thermal expansion properties.
机译:开发商业上可行的平面固体氧化物燃料电池堆的关键问题是适当的密封设计。我们目前正在开发一种用于刚性和压缩密封设计的替代方法,该方法在概念上结合了两种技术的优势,包括磁滞性,机械完整性以及将两种关节基板材料(尤其是陶瓷)中的界面应力降至最低。新的密封件依靠可塑性变形的金属密封件。它提供准动态机械响应的方式是,它粘附到两个密封表面,即不滑动,但在热应力作用下容易屈服或变形。这样,即使两种材料之间存在明显的热膨胀差异,我们也希望减轻相邻陶瓷和金属部件中应力的产生。在这里,我们采用有限元建模来评估这种设计的潜在热循环性能,特别是因为它涉及具有非常不同的热膨胀特性的密封组件。

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