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Factors influencing the formation of a diffusion zone and the adherence of the top coat of high temperature coatings from micro-sized spherical aluminium particles

机译:影响扩散区形成和高温涂层由微米级球形铝颗粒形成的面漆附着力的因素

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摘要

Micro-sized spherical aluminium particles deposited as slurry by brushing or spraying on a substrate alloy oxidise at high temperatures to form a top coat from sintered hollow alumina spheres whilst forming an aluminised diffusion zone. The top coat has the potential to be effective as a thermal barrier by gas phase insulation. The formation of the diffusion zone and the adherence of the top coat are influenced not only by the parameters of the heat treatment, but by factors such as particle size and surface finishing. Coated samples of Alloy 321 were cured and heat treated at 650°C for 5h and were analysed by field emission scanning electron microscopy. Coating samples of Alloy 321 containing spherical aluminium particles with the sizes 0.3-0.7 ìrn, 2-3 ìm, 5ìm, and 30-50 ìm and with a surface finishing of 120#, 500# and 1200# revealed that the size range of 2-5 ìm and a surface finishing of 500 # are more suitable for forming the coating structure of the diffusion zone with an adherent top coat. Using aluminium particles with a size of 30-50 ìm, the temperature range where diffusion predominates at the expenses of the alumina sphere formation is wider and top coat spallation is observed.
机译:通过刷涂或喷涂在基体合金上以浆料形式沉积的微细球形铝颗粒在高温下会氧化,从而形成烧结的空心氧化铝球体的面涂层,同时形成镀铝扩散区。面涂层具有通过气相绝缘有效地用作热障的潜力。扩散区的形成和面漆的附着力不仅受热处理参数的影响,而且还受粒度和表面光洁度等因素的影响。固化的321合金涂层样品在650°C下固化并热处理5h,并通过场发射扫描电子显微镜进行分析。合金321的涂层样品含有大小为0.3-0.7微米,2-3微米,5微米和30-50微米的球形铝颗粒,并且表面光洁度为120#,500#和1200#,表明尺寸范围为2 -5μm和500#的表面光洁度更适合于形成带有粘附面漆的扩散区的涂层结构。使用尺寸为30-50μm的铝颗粒,扩散占优势的温度范围变宽了氧化铝球的形成,并且观察到了面漆层裂。

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