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Correlation between microstructural characteristics and the abrasion wear resistance of sealed thermal-sprayed coatings

机译:密封热喷涂涂层微结构特性与耐磨耐磨性的相关性

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Plasma-sprayed aluminum oxide coatings (Al2O3) are mainly used as a wear-resistant coating in mechanical applications. Previous studies have shown that both the abrasion wear resistance and the corrosion resistance of these coatings can be significantly improved by applying a sealing treatment. It was reported that this improvement is mainly due to the microstructural modifications which take place during the post treatment process. Therefore, this study was conducted in order to determine the influence of the microstructural characteristics on the wear resistance of these coatings, when different sealing treatments were applied to AISI 1020 thermal-sprayed specimens coated with alumina– 13% titania. Abrasion wear resistance of these coatings was evaluated employing the standard rubber wheel abrasion test and the ball-on-disc test. The coatings microstructure was characterized and their wear mechanisms were analyzed by using scanning electron microscopy. Porosity and microhardness values were also reported. It was shown that the abrasion wear resistance of both the phosphoric acid sealed coatings and the epoxy sealed coatings are significantly better than that of the unsealed coatings.
机译:等离子体喷涂的氧化铝涂层(Al 2 O 3)主要用作机械应用中的耐磨涂层。以前的研究表明,通过施加密封处理,可以显着提高耐磨性耐磨性和这些涂层的耐腐蚀性。据报道,这种改进主要是由于在治疗过程中发生的微观结构修改。因此,本研究以确定对这些涂层的耐磨损性的微观结构特征的影响被进行时不同的密封处理被应用到AISI涂覆有氧化铝 - 13%的二氧化钛1020热喷涂试样。评估这些涂层的耐磨性耐磨性,采用标准橡胶轮磨损试验和球盘试验。表征涂层微观结构,并通过使用扫描电子显微镜分析它们的磨损机构。还报道了孔隙率和微硬度值。结果表明,磷酸密封涂层和环氧密封涂层的耐磨性耐磨性明显优于未密封的涂层。

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