热喷涂
微观结构
材料科学
悬挂(拓扑)
相(物质)
冶金
复合材料
涂层
化学
纯数学
有机化学
数学
同伦
作者
Paul Junge,Eva M. Heppke,Rafael Kleba-Ehrhardt,David Karl,Grzegorz Cios,Christian Rupprecht
标识
DOI:10.1016/j.surfcoat.2025.131885
摘要
High-velocity oxygen fuel (HVOF) spraying enables the deposition of particulate ceramic materials, producing dense coatings in the micrometer to millimeter range that are particularly suitable for coating metallic parts for demanding environments. Alumina (Al 2 O 3 ) is one of the most commonly used feedstocks for thermal spray coatings because it has good dielectric properties, excellent hardness, and corrosion resistance while being cost-effective. In this work, alumina coatings from two aqueous suspensions with different particle size distributions were processed by HVOF spraying. Rietveld refinements of the X-ray diffraction (XRD) data were used to quantitatively determine the phase content within the as-sprayed coatings. The phase composition was further explored using the electron backscatter diffraction (EBSD) method. Our work provides strong evidence for the higher retention of the thermodynamically stable α - Al 2 O 3 phase in suspension HVOF-sprayed coatings compared to the powder counterpart. In addition, the impact of key processing parameters was studied, providing guidance for the production of particular phase compositions and microstructures tailored to specific application requirements. • Rietveld refinements show α-Al 2 O 3 phase contents exceeding 81 wt% ( R wp = 0.096). • S-HVOF sprayed Al 2 O 3 coatings show diverse microstructures depending on feedstock and process parameters. • Al 2 O 3 coatings with either predominant α -Al 2 O 3 or γ -Al 2 O 3 phase were obtained.
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