Hafnium silicate formation during the reaction of β‐cristobalite SiO2 and monoclinic HfO2 particles

方石英 硅酸盐 阿累尼乌斯方程 材料科学 单斜晶系 分析化学(期刊) 矿物学 活化能 结晶学 化学 物理化学 晶体结构 石英 冶金 有机化学 色谱法
作者
Jeroen A. Deijkers,H.N.G. Wadley
出处
期刊:Journal of the American Ceramic Society [Wiley]
卷期号:103 (9): 5400-5410 被引量:34
标识
DOI:10.1111/jace.17274
摘要

Abstract Hafnium silicate (HfSiO 4 ; hafnon) is under consideration as an environmental barrier coating material for high‐temperature applications. However, its rate of formation from mixtures of monoclinic HfO 2 and crystalline (β‐cristobalite) SiO 2 powders is unknown. Here it has been synthesized and its formation rate measured during their solid‐state reaction at temperatures from 1250°C to 1400°C. Rietveld refinement of X‐ray diffraction patterns indicates that at 1250°C the hafnon phase fraction increases linearly with time, while at the highest reaction temperature, the hafnon phase fraction exhibited a parabolic dependence upon time. Between these two limiting temperatures, a region of linear behavior preceded a transition to parabolic kinetics, with the transition occurring at an earlier time as the reaction temperature increased. Arrhenius relations fitted the kinetics of hafnium silicate formation in both the linear and parabolic regimes. Scanning electron microscopy indicated that the reaction proceeded by diffusion of SiO 2 into HfO 2 , similar to the mechanism by which zirconium silicate has been formed from vitreous SiO 2 and tetragonal ZrO 2 . The initial linear rate of reaction is consistent with the growth of the contact area between the SiO 2 and HfO 2 particles combined with rapid permeation of the Si 4+ and O 2− through the initial, incompletely formed hafnon. After a thin hafnon layer had formed between the reactants, the rate of hafnium silicate growth slowed and further growth was governed by the rate of diffusion of Si 4+ and O 2− through the reaction product consistent with the observed parabolic dependence of the phase fraction upon time.
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