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Ultra-low leak rate of hybrid compressive mica seals for solid oxide fuel cells

机译:用于固体氧化物燃料电池的混合型云母压缩密封的超低泄漏率

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摘要

A novel hybrid compressive mica seal was developed that showed a reduction of leak rate by about 4300 times (compared to simple mica seals) at 800℃. The hybrid compressive mica seal is composed of 2 compliant glass layers and a mica layer. Three commercially available micas were tested in hybrid compressive seals for solid oxide fuel cell applications. The best results were obtained using Muscovite single crystal mica. The normalized leak rate for this seal at 800℃ was only 1.55 x 10~(-4) sccm/cm at a stress of 100 psi and a pressure gradient of 2 psi. Seals based on the other commercial micas (Muscovite and Phlogopite mica papers), also exhibited superior leak rates (~0.011 sccm/ cm) compared to simple mica seals without the compliant glass layer (about 6-9 sccm/cm). The microstructure of the mica was examined before and after the 800℃ leak tests using scanning electron microscopy. The cause for the substantial reduction of the leak rate was discussed. In addition, the effect of the compressive stresses was also investigated.
机译:开发了一种新型的混合式云母压缩密封件,在800℃时,泄漏率降低了约4300倍(与简单的云母密封件相比)。混合压缩云母密封由2个顺应性玻璃层和1个云母层组成。在用于固体氧化物燃料电池应用的混合压缩密封中测试了三种市售云母。使用白云母单晶云母可获得最佳结果。在压力为100 psi和压力梯度为2 psi的情况下,该密封在800℃的归一化泄漏率仅为1.55 x 10〜(-4)sccm / cm。与没有顺应性玻璃层(约6-9 sccm / cm)的简单云母密封相比,基于其他商业云母(白云母和金云母云母纸)的密封也表现出更高的泄漏率(〜0.011 sccm / cm)。使用扫描电子显微镜在800℃泄漏测试之前和之后检查云母的微观结构。讨论了泄漏率大幅降低的原因。此外,还研究了压应力的影响。

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