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晶体结构对硅酸钇化学耐久性的影响。

The effects of crystal structure on the chemical durability of yttrium disilicate.

作者信息

Bryce Keith, Yang Kun, Li Mingxin, Zhao Dong, Lian Jie

机构信息

Department of Mechanical, Aerospace, and Nuclear Engineering, Rensselaer Polytechnic Institute NY 12180 USA.

Department of Materials Science & Engineering, Rensselaer Polytechnic Institute NY 12180 USA

出版信息

RSC Adv. 2024 Apr 29;14(20):13997-14007. doi: 10.1039/d4ra01072h. eCollection 2024 Apr 25.

Abstract

Amorphous, α, β, and γ-phase yttrium disilicate YSiO pellets were synthesized by spark plasma sintering, and their chemical durability and degradation mechanisms were investigated semi-dynamic leaching test in pH = 3 nitric acid at 90 °C. All crystalline phases displayed relatively congruent dissolution with a slight preferential release of Y. The amorphous sample showed clear incongruent dissolution with preferential release of Y, leading to a surface reorganization reaction and the formation of a SiO passivation layer 20-25 μm thick on the surface of the sample. This passivation layer led to a continuous decrease in the elemental release rates of the amorphous sample. The γ-phase sample displayed the lowest short-term and long-term leaching rates of Y and Si, followed by the β, α, and then amorphous sample. The crystalline samples showed increasing release rates over time indicating a dissolution-controlled reaction mechanism. Post-leaching microstructural characterization of the β and γ samples revealed variations in the corrosion levels of the surface grains, indicating a dependence on grain orientation.

摘要

通过放电等离子烧结合成了非晶态、α相、β相和γ相的硅酸钇(YSiO)颗粒,并在90℃的pH = 3硝酸中进行半动态浸出试验,研究了它们的化学耐久性和降解机制。所有晶相均表现出相对一致的溶解,Y有轻微的优先释放。非晶态样品表现出明显的不一致溶解,Y优先释放,导致表面重组反应,并在样品表面形成了一层20 - 25μm厚的SiO钝化层。该钝化层导致非晶态样品的元素释放速率持续下降。γ相样品的Y和Si的短期和长期浸出率最低,其次是β相、α相,然后是非晶态样品。结晶样品的释放速率随时间增加,表明是溶解控制的反应机制。β相和γ相样品浸出后的微观结构表征揭示了表面晶粒腐蚀程度的变化,表明其依赖于晶粒取向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62d9/11056773/e195efcf31b7/d4ra01072h-f1.jpg

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