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Role of suspension preparation in the spray drying process to obtain nano/submicrostructured YSZ powders for atmospheric plasma spraying

机译:悬浮液制备在喷雾干燥过程中的作用,以获得用于大气等离子喷涂的纳米/亚微结构YsZ粉末

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摘要

Thermal barrier coatings were manufactured by atmospheric plasma spray process from YSZ powders. These powders were made by a reconstitution process which consists in a spray-drying of suspensions followed by thermal treatment of the granules.Nano- and submicron-sized YSZ particles were used as starting material. Feeding well dispersed suspension to spray-drying chamber is the first key step in the reconstitution process. With this aim, concentrated, stable YSZ suspensions were obtained by means of the optimisation of the preparation conditions. Then reconstituted granules were produced by spray-drying of the YSZ suspensions and the following thermal treatment which was optimised.The reconstituted powders were then successfully deposited on austenitic stainless steel coupons by APS. The findings in this work proved that the reconstituted powders characteristics which in turn are related to the starting suspension properties affect the final coating microstructure in terms of the amount of unmelted zones.
机译:隔热涂层是通过YSZ粉末通过大气等离子喷涂工艺制造的。这些粉末是通过重构过程制成的,该过程包括将悬浮液喷雾干燥,然后对颗粒进行热处理。纳米和亚微米尺寸的YSZ颗粒用作原料。将分散良好的悬浮液送入喷雾干燥室是重构过程的第一步。为此,通过优化制备条件获得了浓缩,稳定的YSZ悬浮液。然后通过喷雾干燥YSZ悬浮液并优化以下热处理生产复溶颗粒。然后通过APS将复溶粉末成功沉积在奥氏体不锈钢试样上。这项工作的发现证明,与未处理的悬浮液数量有关的,与初始悬浮性能有关的重构粉末特性会影响最终的涂层微观结构。

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