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Bonding characteristics of glass seal/metallic interconnect for SOFC applications: Comparative study on chemical and mechanical properties of the interface

机译:用于sOFC应用的玻璃密封/金属互连的粘合特性:界面的化学和机械性能的比较研究

摘要

Glass and glass–ceramics have been extensively used as seal material in planar solid oxide fuel cell (SOFC) stack. The main objective of the present work was to investigate the joining properties of a silicate based glass-ceramic as seal material with two different ferritic stainless alloys as interconnect, i.e. SS430 and Crofer 22APU. For a straight-forward approach to evaluate sealing materials, sandwiched samples will allow interfacial strength measurements and macroscopic overview on the interfacial situation of a glass–ceramic material. A convenient method for determining the interfacial fracture energies is double cantilever beam (DCB) test. The method allows to measure the crack-growth resistance of these materials to be able to use fracture mechanics design methods. Stable crack growth is necessary to get reliable and unambiguous fracture toughness data. If the fracture toughness values are determined from test configurations that do not allow stable crack growth, then the measurement may be related more to crack initiation than crack growth. In such cases, the calculated value of the fracture toughness may depend on the geometry of the machined notch.
机译:玻璃和玻璃陶瓷已被广泛用作平面固体氧化物燃料电池(SOFC)电池组的密封材料。本工作的主要目的是研究硅酸盐基玻璃陶瓷作为密封材料与两种不同的铁素体不锈钢合金(即SS430和Crofer 22APU)的互连性能。对于直接评估密封材料的方法,将夹层样品用于玻璃陶瓷材料的界面强度测量和宏观概览。确定界面断裂能的一种便捷方法是双悬臂梁(DCB)测试。该方法可以测量这些材料的抗龟裂性,从而能够使用断裂力学设计方法。稳定的裂纹扩展对于获得可靠而明确的断裂韧性数据是必要的。如果断裂韧性值是从不允许稳定裂纹扩展的测试配置中确定的,则该测量可能与裂纹萌生而不是裂纹扩展有关。在这种情况下,断裂韧性的计算值可能取决于加工后的缺口的几何形状。

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