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Current Trends in the Development of Suspensions and Liquid Precursors for Thermal Spraying: Case of Zn_2TiO_4

机译:热喷涂用悬浮液和液体前体的当前发展趋势:Zn_2TiO_4案例

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摘要

When compared with conventional thermal spraying processes, thermal spraying of suspensions allows to produce coatings with outstanding properties in terms of microstructure, surface topography, and phase compositions, as well as mechanical, electrical or tribological requirements. The use of suspensions as feedstock results in an almost unlimited flexibility in terms of chemical composition of the sprayed coatings. Moreover, thermal spraying of suspensions is a promising technique for processing expensive raw materials. Zn_2TiO_4 coatings are only one example where the high costs of blended oxide powders as feedstock material hinders the market introduction, whereas outstanding electrical properties and photocatalytic activity of thermally sprayed Zn_2TiO_4 coatings are of great interest for various industrial applications. In this work, single oxide ZnO and TiO_2 raw materials as well as a Zn_2TiO_4 feedstock powder were used to develop tailored aqueous suspensions suitable for thermal spraying. To follow the formation of the compositions in the system ZnO-TiO_2, differential thermal analysis (DTA) and thermal gravimetry (TG) measurements were performed. Preparation routes of stable suspensions with low sedimentation rates, low viscosity and good flowability are discussed. Exemplary microstructures and phase compositions of sprayed coatings are shown. In all sprayed coatings, the Zn_2TiO_4 phase has been formed during Suspension High Velocity Oxygen Fuel Spraying (S-HVOF). This work demonstrates the potential to develop appropriate cost-efficient suspension feedstocks from single oxide raw materials to obtain Zn_2TiO_4 coatings.
机译:与传统的热喷涂工艺相比,悬浮液的热喷涂可以生产出在微观结构、表面形貌和相组成以及机械、电气或摩擦学要求方面具有出色性能的涂层。使用悬浮液作为原料,在喷涂涂料的化学成分方面具有几乎无限的灵活性。此外,悬浮液的热喷涂是加工昂贵原材料的一种很有前途的技术。Zn_2TiO_4涂料只是混合氧化物粉末作为原料的高成本阻碍市场推出的一个例子,而热喷涂Zn_2TiO_4涂料的出色电性能和光催化活性在各种工业应用中引起了极大的兴趣。在这项工作中,使用单一氧化物ZnO和TiO_2原料以及Zn_2TiO_4原料粉末来开发适合热喷涂的定制水悬浮液。为了跟踪ZnO-TiO_2体系中成分的形成,进行了差热分析(DTA)和热重(TG)测量。讨论了沉降速率低、粘度低、流动性好的稳定悬浮液的制备路线。图中显示了喷涂涂层的示例性微观结构和相组成。在所有喷涂涂料中,Zn_2TiO_4相是在悬浮高速氧燃料喷涂 (S-HVOF) 期间形成的。这项工作证明了从单一氧化物原料开发适当的具有成本效益的悬浮原料以获得Zn_2TiO_4涂层的潜力。

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