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Mid-term stability of novel mica-based compressive seals for solid oxide fuel cells

机译:新型基于云母的固体氧化物燃料电池压缩密封的中期稳定性

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摘要

A novel mica-based compressive seal concept was examined at elevated temperatures under compressive stress to evaluate its stability. The "hybrid" mica compressive seals, composed of cleaved Muscovite mica and two compliant inter-layers, were reported earlier to have very low leak rates at 800 ℃. In the present study, we examined the mid-term (~350―700 h) stability of the mica-based compressive seals with three different inter-layers: a low melting borosilicate glass, a glass ceramic material, and a metallic material. The 800 ℃ leak test results showed excellent stability for the three different inter-layers in air at a compressive stress of 100 psi as the leak rates remained almost unchanged during the test. Microstructural characterization of the interfaces showed very limited interfacial reaction or glass penetration at the glass/8YSZ substrate interface. The results clearly demonstrate the applicability of the mica-based compressive seals for solid oxide fuel cells.
机译:一种新型的基于云母的压缩密封概念在高温下的压缩应力下进行了评估,以评估其稳定性。据报道,由裂解的云母云母和两个顺应的中间层组成的“混合”云母压缩密封在800℃时泄漏率非常低。在本研究中,我们研究了具有三种不同夹层的云母基压缩密封件的中期(〜350-700 h)稳定性:低熔点硼硅酸盐玻璃,玻璃陶瓷材料和金属材料。 800℃泄漏测试结果表明,在空气中三个不同的中间层在100 psi的压缩应力下具有出色的稳定性,因为在测试过程中泄漏率几乎保持不变。界面的微结构表征显示出非常有限的界面反应或玻璃/ 8YSZ衬底界面处的玻璃渗透。结果清楚地证明了基于云母的压缩密封件对于固体氧化物燃料电池的适用性。

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