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Effective elastic properties of planar SOFCs: a non-local dynamic homogenization approach

机译:平面sOFC的有效弹性性质:非局部动态均质化方法

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摘要

Abstract The focus of the article is on the analysis of effective elastic properties of planar Solid Oxide Fuel Cell (SOFC) devices. An ideal periodic multi-layered composite (SOFC-like) reproducing the overall properties of multi-layer {SOFC} devices is defined. Adopting a non-local dynamic homogenization method, explicit expressions for overall elastic moduli and inertial terms of this material are derived in terms of micro-fluctuation functions. These micro-fluctuation functions are then obtained solving the cell problems by means of finite element techniques. The effects of the temperature variation on overall elastic and inertial properties of the fuel cells are studied. Dispersion relations for acoustic waves in SOFC-like multilayered materials are derived as functions of the overall constants, and the results obtained by the proposed computational homogenization approach are compared with those provided by rigorous Floquet–Bloch theory. Finally, the influence of the temperature and of the elastic properties variation on the Bloch spectrum is investigated.
机译:摘要本文的重点是分析平面固体氧化物燃料电池(SOFC)装置的有效弹性。定义了一种理想的周期性多层复合材料(类似于SOFC),可再现多层{SOFC}器件的整体性能。采用非局部动态均质化方法,根据微涨落函数推导了该材料的整体弹性模量和惯性项的明确表达式。然后,通过有限元技术获得这些微波动函数,以解决细胞问题。研究了温度变化对燃料电池整体弹性和惯性特性的影响。推导声波在类SOFC多层材料中的色散关系作为总常数的函数,并将通过拟议的计算均化方法获得的结果与严格的Floquet-Bloch理论提供的结果进行比较。最后,研究了温度和弹性性能变化对布洛赫光谱的影响。

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