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用于固体氧化物电池密封的玻璃-氧化锆复合材料:制备、性能及在反复热循环中的稳定性

Glass-Zirconia Composites as Seals for Solid Oxide Cells: Preparation, Properties, and Stability over Repeated Thermal Cycles.

作者信息

Kosiorek Magdalena, Żurawska Agnieszka, Ajdys Leszek, Kolasa Anna, Naumovich Yevgeniy, Wiecińska Paulina, Yaremchenko Aleksey, Kupecki Jakub

机构信息

Institute of Power Engineering, Mory 8, 01-330 Warsaw, Poland.

Center for Hydrogen Technologies (CTH2), Institute of Power Engineering, Augustowka 36, 02-981 Warsaw, Poland.

出版信息

Materials (Basel). 2023 Feb 15;16(4):1634. doi: 10.3390/ma16041634.

Abstract

This study focuses on the preparation and characterization of composite gaskets designed for the sealing of the solid oxide cell stacks operating below 700 °C. The seals were fabricated with the addition of various amounts (10-90 wt.%) of 3 mol.% yttria partially stabilized zirconia to a BaO-AlO-CaO-SiO glass matrix. The sample gaskets in the form of thin frames were shaped by tape casting. The quality of the junctions between the composites and Crofer 22APU steel commonly used as an SOC interconnect was evaluated after thermal treatment of heating to 710 °C, then cooling to the working temperature of around 620 °C and then leaving them for 10h in an air atmosphere, before cooling to room temperature. The samples were also studied after 3, 5, and 10 thermal cycles to determine the changes in microstructure and to evaluate the porosity and possible crystallization of the glass phase. The compression of the seals was calculated on the basis of differences in thickness before and after thermal treatment. The influence of zirconia additions on the mechanical properties of the seals was studied. The experimental results confirmed that glass-ceramic composites are promising materials for gaskets in SOC stacks. The most beneficial properties were obtained for a composite containing 40 wt.% of YSZ.

摘要

本研究聚焦于为工作温度低于700°C的固体氧化物电池堆密封而设计的复合垫片的制备与表征。通过向BaO-AlO-CaO-SiO玻璃基体中添加不同量(10-90 wt.%)的3 mol.%氧化钇部分稳定氧化锆来制造密封件。薄框架形式的样品垫片通过流延成型。在加热至710°C、冷却至约620°C的工作温度、然后在空气气氛中放置10小时、再冷却至室温的热处理之后,评估复合材料与常用作固体氧化物电池互连材料的克罗费尔22APU钢之间结合处的质量。在经过3、5和10次热循环后,还对样品进行了研究,以确定微观结构的变化,并评估玻璃相的孔隙率和可能的结晶情况。基于热处理前后的厚度差异计算密封件的压缩量。研究了氧化锆添加量对密封件机械性能的影响。实验结果证实,玻璃陶瓷复合材料是用于固体氧化物电池堆中垫片的有前景的材料。对于含有40 wt.% YSZ的复合材料,获得了最有益的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48e7/9959674/c81cfec2b3db/materials-16-01634-g001.jpg

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