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首页> 外文期刊>Journal of power sources >Barium silicates as high thermal expansion seals for solid oxide fuel cells studied by high-temperature X-ray diffraction (HT-XRD)
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Barium silicates as high thermal expansion seals for solid oxide fuel cells studied by high-temperature X-ray diffraction (HT-XRD)

机译:硅酸钡作为固体氧化物燃料电池的高热膨胀密封材料,通过高温X射线衍射(HT-XRD)研究

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Gas-tight seals between metals and ceramics in solid-oxide fuel cells can be fabricated from glasses which enable the crystallization of phases with high thermal expansion coefficients (mostly barium silicates). This article mainly reports on high-temperature X-ray diffraction studies on these silicates. It is shown that all barium silicates exhibit thermal expansion coefficients in the range from 10.5 to 15.4 × 10~(-6) K~(-1) (100-800 ℃). The expansions are strongly dependent on the respective crystallographic axis. The ortho-and metasilicates exhibit the largest thermal expansion coefficients. The coefficient of thermal expansion of a sealing glass is attributed to the thermal expansion of the crystalline phases and the residual glassy phase. The phase formation should carefully be controlled also with respect to aging. Crystalline phases with high coefficients of thermal expansion, such as the barium silicates, are advantageous as components in such sealing glasses.
机译:固体氧化物燃料电池中金属和陶瓷之间的气密密封件可以用玻璃制成,这种玻璃可以使具有高热膨胀系数的相(主要是硅酸钡)结晶。本文主要报道了对这些硅酸盐的高温X射线衍射研究。结果表明,所有硅酸钡的热膨胀系数均在10.5〜15.4×10〜(-6)K〜(-1)(100-800℃)范围内。膨胀在很大程度上取决于相应的晶体学轴。原硅酸盐和偏硅酸盐具有最大的热膨胀系数。密封玻璃的热膨胀系数归因于结晶相和残余玻璃相的热膨胀。在老化方面也应仔细控制相的形成。具有高热膨胀系数的结晶相,例如硅酸钡,作为这种密封玻璃中的组分是有利的。

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