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Effect of substrate materials on rutile crystalline orientation in plasma-sprayed TiO2 coatings

机译:基质材料对等离子喷涂TiO2涂层中金红石晶向的影响

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TiO2 coatings are of technical importance owing to their promising applications to photocatalytical, electrical, optical and tribological coatings. Thermal spraying process has been widely used to deposit both metallic and nonmetallic coatings. During thermal spraying, spray particle at fully or partially melted condition is projected to a substrate and subsequently flattens, rapidly cools and solidifies. Therefore, a coating in lamellar structure is usually formed as a quenched microstructure. TiO2 coatings were deposited on different substrates through plasma spraying with fused-crushed powder in rutile phase as feedstock to reveal the crystalline orientation in the coatings. XRD results show that the coatings consist of rutile phase with a fraction of anatase phase, and the rutile phase presents a preferable crystalline orientation along [101] direction. It is found that the orientation factors of rutile phase in the thin coatings are significantly influenced by substrate materials. The thick coatings yield the same orientation factors of 0.22 to 0.23 on all substrates in spite of substrate materials. It is considered that the thermal properties of substrate materials are the dominant factors for the preferable crystalline orientation in rutile phase within plasmasprayed TiO2 coating.
机译:TiO2涂料由于在光催化,电,光和摩擦学涂料中的应用前景广阔而具有重要的技术意义。热喷涂工艺已被广泛用于沉积金属和非金属涂层。在热喷涂过程中,处于完全或部分熔融状态的喷涂颗粒会投射到基材上,然后变平,迅速冷却并固化。因此,层状结构的涂层通常形成为淬火的微观结构。通过等离子喷涂金红石相熔碎粉末作为原料,通过等离子喷涂将TiO2涂层沉积在不同的基材上,以揭示涂层中的晶体取向。 XRD结果表明,涂​​层由金红石相和一部分锐钛矿相组成,并且金红石相沿[101]方向表现出较好的结晶取向。已发现,薄涂层中金红石相的取向因子受基材材料的影响很大。尽管有基材材料,但厚涂层在所有基材上仍产生0.22至0.23的相同取向因子。认为基材材料的热性能是等离子喷涂TiO2涂层中金红石相中优选晶体取向的主要因素。

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