Otto-Schott-Institut für Materialforschung, Jena University, Fraunhoferstr. 6, 07743, Jena, Germany.
Sci Rep. 2017 Jun 13;7(1):3344. doi: 10.1038/s41598-017-03132-x.
Up to now, the thermal expansion behavior of multiphase glass-ceramics cannot be predicted reliably because of the nescience about the formation of the type and concentration of crystalline phases. In the system BaO-SrO-ZnO-SiO, recently a new phase based on BaSrZnSiO solid solutions was found, which exhibits unexpected low and highly anisotropic thermal expansion, which can be used for an adjustment of the thermal expansion properties. In the case of sealing materials for high-temperature reactors, the formation of this phase should be avoided. Hence, in this manuscript the concentration thresholds in which these solid solutions precipitate from glasses were determined. The phase analysis was correlated with the thermal expansion behavior of the glass-ceramics. Depending on the Ba/Sr-ratio of the glasses and the considered temperature range, the coefficients of thermal expansion of the glass-ceramics vary between 19.4·10 K and 4.8·10 K. The concentration thresholds in which the as mentioned phases form via crystallization of glasses differ strongly from the literature values obtained via conventional ceramic mixed oxide route.
到目前为止,由于对多相微晶玻璃中晶相的类型和浓度形成的无知,多相微晶玻璃的热膨胀行为还不能可靠地预测。在 BaO-SrO-ZnO-SiO 体系中,最近发现了一种基于 BaSrZnSiO 固溶体的新相,它表现出出乎意料的低和各向异性热膨胀,可以用于调整热膨胀性能。在高温反应堆的密封材料的情况下,应该避免这种相的形成。因此,在本文中确定了这些固溶体从玻璃中析出的浓度阈值。相分析与微晶玻璃的热膨胀行为相关。取决于玻璃的 Ba/Sr 比和考虑的温度范围,微晶玻璃的热膨胀系数在 19.4·10-6 K 至 4.8·10-6 K 之间变化。通过玻璃的结晶形成上述相的浓度阈值与通过传统陶瓷混合氧化物路线获得的文献值有很大的不同。