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Wear Resistance of Plasma-Sprayed Al{sub}2O{sub}3-TiO{sub}2 Nanocoatings

机译:耐磨性等离子体喷涂的Al {sub} 2o {sub} 3-tio {sub} 2纳米织物

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Wear resistance of Al{sub}2O{sub}3-8wt.%TiO{sub}2 coatings plasma-sprayed using nanopowders was investigated. Four types of nanostructured Al{sub}2O{sub}3-8wt.%TiO{sub}2 powders were plasma-sprayed on a low-carbon steel substrate by using different critical plasma spray parameters (CPSP). The coatings consisted of completely melted and partially melted regions. The hardness of the coatings increased with increasing CPSP, while the wear resistance was the highest for the coating sprayed with the lowest CPSP. The main wear mechanism was a delamination mode in the coating sprayed with the high CPSP, but was changed to an abrasive mode in the coating sprayed with the low CPSP. According to this change in the wear mechanism, the wear resistance was the best in the coating sprayed with lowest CPSP, while its hardness was lowest.
机译:研究了耐磨性Al {Sub} 2O {Sub} 3-8wt。使用纳米粉粉研究了使用纳米粉末的涂层等离子体喷涂。通过使用不同的临界等离子体喷射参数(CPSP),四种纳米结构Al {Sub} 2O {Sub} 2O {Sub} 3-8wt。%TiO {Sub} 2粉末在低碳钢基板上被等离子体喷涂。涂层由完全熔化和部分熔化的区域组成。随着CPSP的增加,涂层的硬度增加,而耐磨性是用最低CPSP喷涂的涂层的最高。主磨损机构是用高CPSP喷涂的涂层中的分层模式,但是在用低CPSP喷涂的涂层中改变为磨料模式。根据磨损机构的这种变化,耐磨性是用最低CPSP喷涂的涂层中最好的,而其硬度最低。

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