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首页> 外文期刊>Journal of the European Ceramic Society >Reactive crystallization in HfO2 exposed to molten silicates
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Reactive crystallization in HfO2 exposed to molten silicates

机译:暴露于熔融硅酸盐的HFO2中的反应性结晶

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摘要

Hafnia is of interest in thermal and environmental barrier coatings, but little is known about its response to molten silicate attack. This article investigates that response using two model silicate melts, compares it with pure ZrO2 and examines the effect of YO1.5 additions. HfO2 was found to form HfSiO4 with acidic melts but undergoes grain boundary penetration in basic melts, which do not exhibit reactive crystallization. The latter can be exacerbated by microcracking resulting from the thermal expansion anisotropy of monoclinic HfO2. Y additions generally degrade the ability to form hafnon (and zircon), and exacerbate grain boundary penetration, especially in HfO2 where Y is present as a fluorite second phase. The fluorite controls grain growth in monoclinic HfO2 and suppresses microcracking, but dissolves faster, especially in basic melts. The results are presented in the context of the relevant thermodynamics and kinetics. The implications for coating applications are discussed.
机译:Hafnia对隔热和环保涂层感兴趣,但对其对熔融硅酸盐侵蚀的反应知之甚少。本文使用两种模型硅酸盐熔体研究了这种响应,将其与纯ZrO2进行了比较,并检验了YO1的影响。增加5项。发现HfO2与酸性熔体形成HfSiO4,但在碱性熔体中经历晶界穿透,而碱性熔体不表现出反应结晶。单斜HfO2热膨胀各向异性导致的微裂纹会加剧后者。Y的添加通常会降低形成hafnon(和锆石)的能力,并加剧晶界穿透,尤其是在HfO2中,Y以萤石第二相的形式存在。萤石控制单斜HfO2中的晶粒生长并抑制微裂纹,但溶解速度更快,尤其是在碱性熔体中。结果在相关热力学和动力学的背景下给出。讨论了涂层应用的含义。

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