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Fabrication and properties of plasma-sprayed Al2O3/TiO2 composite coatings: A role of nano-sized TiO2 addition

机译:等离子喷涂Al2O3 / TiO2复合涂层的制备和性能:纳米TiO2添加的作用

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摘要

Al2O3/xTiO2 (where x=0, 3, 13 and 20 wt%) composite coatings were deposited onto mild steel substrates by atmospheric plasma spraying of mixed micron-sized Al2O3 and nano-sized TiO2 powders. Phase transformation from mainly stable α-Al2O3 and anatase-TiO2 in the powders to predominant metastable γ-Al2O3 and rutile-TiO2 in the coatings was observed. Reaction between Al2O3 and TiO2 phase also occurred producing Al2TiO5 phase. Microstructural investigation showed that well separated TiO2 lamellas were homogeneously dispersed between Al2O3 lamellas. Hardness was found to decrease with increasing TiO2 content while fracture toughness increased. The average wear rates of composite coatings determined by sliding wear test were lower than that of monolithic Al2O3 coating by approximately 40%. This was mainly attributed to an increase in fracture toughness and reduction of friction coefficient due to a presence of TiO2 splats
机译:通过大气等离子喷涂混合的微米级Al2O3和纳米级TiO2粉末,将Al2O3 / xTiO2(其中x = 0、3、13和20 wt%)复合涂层沉积到低碳钢基材上。观察到从粉末中主要稳定的α-Al2O3和锐钛矿型TiO2到涂层中主要的亚稳态γ-Al2O3和金红石型TiO2的相变。 Al2O3与TiO2相之间也发生反应,生成Al2TiO5相。显微组织研究表明,分离良好的TiO2薄片均匀地分散在Al2O3薄片之间。发现随着TiO 2含量的增加,硬度降低,而断裂韧性增加。通过滑动磨损测试确定的复合涂层的平均磨损率比整体式Al2O3涂层低约40%。这主要归因于由于存在TiO2片而导致断裂韧性提高和摩擦系数降低

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