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Preparation of high solids content nano-titania suspensions to obtain spray-dried nanostructured powders for atmospheric plasma spraying

机译:制备高固含量纳米二氧化钛悬浮液,以获得用于大气等离子喷涂的喷雾干燥的纳米结构粉末

摘要

Nanosized TiO2powder with an average primary size of ∼20 nm and surface area of ∼50 m2/g (Aeroxide®P25, Degussa-Evonik, Germany) was used as starting material. A colloidal titania suspension from the same supplier was also used (W740X). The dispersing conditions were studied as a function of pH, dispersant content, and solids loading. Well-dispersed TiO2 nano suspensions with solids contents up to 30 vol.% (62 wt%) were obtained by dispersing the powder with 4 wt% PAA. Suspensions with solids contents as high as 35 vol.% were prepared by adding the TiO2 nanoparticles to the TiO2 colloida lsuspension under optimised dispersing conditions.TiO2powder reconstitution was performed by spray drying both types of nanosuspensions to obtain free-flowing micrometre-sized nanostructured granules. The spray-dried nanostructured TiO2 granules were deposited on austenitic stainless steel coupons using atmospheric plasma spraying. Coating microstructure and phase composition were characterised using scanning electron microscopy and X-ray diffraction techniques.
机译:纳米二氧化钛粉体的平均初始粒径约为20纳米,表面积约为50平方米/克(Aeroxide®P25,德国德固赛-赢创)。还使用了来自同一供应商的胶体二氧化钛悬浮液(W740X)。研究了分散条件随pH,分散剂含量和固体载量的变化。通过将粉末与4 wt%的PAA分散,可以获得分散度良好的TiO2纳米悬浮液,其固含量最高为30体积%(62 wt%)。在优化的分散条件下,通过将TiO2纳米颗粒添加到TiO2胶体悬浮液中,制备了固含量高达35%(体积)的悬浮液。通过喷雾干燥两种类型的纳米悬浮液来获得纳米颗粒尺寸的自由流动,从而实现了TiO2粉末的重构。使用大气等离子喷涂将喷雾干燥的纳米结构TiO2颗粒沉积在奥氏体不锈钢试样上。使用扫描电子显微镜和X射线衍射技术表征涂层的微观结构和相组成。

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