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Atmospheric plasma spraying coatings from alumina–titania feedstock comprising bimodal particle size distributions

机译:氧化铝 - 二氧化钛原料的大气等离子喷涂涂层,包括双峰粒度分布

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摘要

In this work, Al2O3–13 wt% TiO2 submicron-nanostructured powders were deposited using atmospheric plasma spraying. The feedstocks were obtained by spray drying two starting suspensions of different solids content, prepared by adding nanosized TiO2 and submicron-sized Al2O3 powders to water. The spray-dried granules were heat-treated to reduce their porosity and the powders were fully characterised in both untreated and thermally treated state. Comparison with two commercial feedstocks was carried out. Characterisation allowed a temperature for the thermal treatment to be chosen on the basis of the sprayability of the feedstock and the preservation as much as possible of the submicron-sized structure of the unfired agglomerates.Optimisation of the deposition conditions enabled the reconstituted powders to be successfully deposited, yielding coatings that were well bonded to the substrate. The coating microstructure, characterised by SEM, was mostly formed by a matrix of fully molten particles where the presence of semi-molten feedstock agglomerates was also observed.Moreover, microhardness, toughness, adhesion and tribological behaviours were determined, and the impact of the granule characteristics on these properties was studied. It was found that changing the feedstock characteristics allows controlling the coating quality and properties. In general, good mechanical properties were obtained using a feedstock comprising a binary mixture of submicrometric Al2O3 and nanometric TiO2 particles in the spray-dried powder.
机译:在这项工作中,使用大气等离子喷涂沉积了Al2O3-13wt%的TiO2亚微米纳米结构粉末。通过将两种不同固体含量的起始悬浮液喷雾干燥获得原料,方法是将纳米级TiO2和亚微米级Al2O3粉末添加到水中。对喷雾干燥的颗粒进行热处理以降低其孔隙率,并且在未处理和热处理状态下都对粉末进行了充分表征。与两种商业原料进行了比较。表征可根据原料的可喷涂性和未烧结团块的亚微米级结构的保存来选择热处理的温度。沉积条件的优化使重构粉末得以成功沉积的涂层,可以很好地粘合到基材上。以SEM为特征的涂层微观结构主要由完全熔融颗粒的基质形成,同时还观察到半熔融原料附聚物的存在,此外还测定了显微硬度,韧性,附着力和摩擦学行为,以及颗粒的影响研究了这些性质的特性。已经发现,改变原料特性可以控制涂层的质量和性能。通常,使用在喷雾干燥的粉末中包含亚微米级的Al2O3和纳米级的TiO2颗粒的二元混合物的原料可获得良好的机械性能。

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