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首页> 外文期刊>Materials Research Bulletin >Binary, ternary and quaternary silicates of CaO, BaO and ZnO in high thermal expansion seals for solid oxide fuel cells studied by high-temperature X-ray diffraction (HT-XRD)
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Binary, ternary and quaternary silicates of CaO, BaO and ZnO in high thermal expansion seals for solid oxide fuel cells studied by high-temperature X-ray diffraction (HT-XRD)

机译:通过高温X射线衍射(HT-XRD)研究固体氧化物燃料电池高热膨胀密封中CaO,BaO和ZnO的二元,三元和四元硅酸盐

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摘要

Gas-tight seals based on glasses suitable for joining of materials with high thermal expansion coefficients are for example required for solid-oxide fuel cells. If these seals are to be used at high temperatures, they can only be fabricated from glasses which enable the crystallization of phases with high thermal expansion coefficients. This paper reports on some components from systems suitable for high thermal expansion seals: binary calcium silicates, CaSiO_3, Ca_3Si_2O_7 and Ca_2Si0_4 zinc silicates, Zn_2SiO_4, ternary silicates of BaO, CaO and ZnO, BaCa_2Si_3O_9, Ca_2ZnSi_2O_7, and one quaternary silicate, Ba_2CaZn_2Si_6O_(17) studied by high-temperature X-ray diffraction. Only CaSiO_3, Ca_3Si_2O_7 and BaCa_2Si_3O_9 exhibit thermal expansion coefficients in the range suitable for high thermal expansion seals of 11.2-11.8 × 10~(-6)K~(-1) (100-800℃). The thermal expansions strongly depend on the respective crystallo-graphic axis. The coefficient of thermal expansion of a sealing glass is not only affected by the thermal expansions of the crystalline phases, but also by that of the residual glassy phase as well as by the elastic properties. The phase formation should carefully be controlled also with respect to aging.
机译:例如,固体氧化物燃料电池需要基于玻璃的气密密封件,该气密密封件适合于接合具有高热膨胀系数的材料。如果要在高温下使用这些密封件,则只能用能使具有高热膨胀系数的相结晶的玻璃制成。本文报告了适用于高热膨胀密封的系统中的某些成分:二元硅酸钙,CaSiO_3,Ca_3Si_2O_7和Ca_2SiO_4硅酸锌,Zn_2SiO_4,BaO,CaO和ZnO的三元硅酸盐,BaCa_2Si_3O_9,Ca_2ZnSi_2O_2O_7和一个四元季铵盐)通过高温X射线衍射研究。仅CaSiO_3,Ca_3Si_2O_7和BaCa_2Si_3O_9的热膨胀系数在适用于11.2-11.8×10〜(-6)K〜(-1)(100-800℃)的高热膨胀密封的范围内。热膨胀强烈地取决于各自的结晶图轴。密封玻璃的热膨胀系数不仅受到结晶相的热膨胀的影响,而且还受到残余玻璃相的热膨胀系数以及弹性特性的影响。在老化方面也应仔细控制相的形成。

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