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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Composition, characteristics and tribological behavior of Cr, Co-Cr and Co-Cr/TiO2 nano-composite coatings electrodeposited from trivalent chromium based baths
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Composition, characteristics and tribological behavior of Cr, Co-Cr and Co-Cr/TiO2 nano-composite coatings electrodeposited from trivalent chromium based baths

机译:从三价铬基镀液中电沉积的Cr,Co-Cr和Co-Cr / TiO2纳米复合涂层的组成,特性和摩擦学行为

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Cr, Co-Cr and Co-Cr/TiO2 nano-composite coatings were electrodeposited from Cr(III) based electrolytes onto 316L SS substrates. The effects of TiO2 nano-particles concentration on co-deposition of these particles along with Cr content and microhardness of the coatings were investigated. Morphology and structure of the Cr, Co-Cr and Co-Cr/TiO2 coatings besides their tribological behavior were studied, and the results were compared to the substrate. The results showed that co-deposition of TiO2 nano-particles and chromium content of the coatings increased with enhancing particles concentration in the bath. Microhardness of Co-Cr and Co-Cr/TiO2 coatings were improved by increasing their Cr and TiO2 content, respectively. However, the presence of more than 3 wt.% TiO2 in the composite films had a negligible effect on microhardness of these samples. All the coatings had nodular morphology and contained microcracks. Nodules sizes and the number of microcracks in the alloy and composite coatings were lower than the Cr film. The structure of the Co-Cr and Co-Cr/TiO2 coatings were crystalline, while it was amorphous for Cr film. Wear results revealed that the Co-29.1Cr/3.0TiO(2) coating had the lowest wear loss and coefficient of friction between all the samples. The wear resistance of the Co-29.3Cr coating was better than the substrate, while Cr film had the worst wear resistance. According to SEM micrographs from the worn surface of the samples, abrasion was the main wear mechanism in 316L SS substrate, as well as in the Co-29.3Cr and Co-29.1Cr/3.0TiO(2) coatings. However, limited adhesion also occurred on the worn surface of the substrate. Detachment of Cr from the wearing surface during the sliding resulted in higher volume losses in this sample. (C) 2015 Elsevier B.V. All rights reserved.
机译:将Cr,Co-Cr和Co-Cr / TiO2纳米复合涂层从Cr(III)基电解质电沉积到316L SS基板上。研究了TiO2纳米颗粒浓度对这些颗粒共沉积以及Cr含量和涂层显微硬度的影响。研究了Cr,Co-Cr和Co-Cr / TiO2涂层的形貌和结构,以及它们的摩擦学行为,并将结果与​​基底进行了比较。结果表明,随着镀液中颗粒浓度的增加,TiO2纳米颗粒的共沉积和涂层的铬含量增加。 Co-Cr和Co-Cr / TiO2涂层的显微硬度分别通过增加Cr和TiO2含量来提高。然而,复合膜中TiO 2的含量超过3重量%对这些样品的显微硬度影响可忽略不计。所有涂层具有结节形的形态并含有微裂纹。合金和复合涂层中的结节尺寸和微裂纹数量均低于Cr膜。 Co-Cr和Co-Cr / TiO2涂层的结构是结晶的,而Cr膜是非晶的。磨损结果表明,在所有样品之间,Co-29.1Cr / 3.0TiO(2)涂层的磨损损耗和摩擦系数最低。 Co-29.3Cr涂层的耐磨性优于基材,而Cr膜的耐磨性最差。根据样品磨损表面的SEM显微照片,磨损是316L SS基材以及Co-29.3Cr和Co-29.1Cr / 3.0TiO(2)涂层的主要磨损机理。然而,在基材的磨损表面上也发生了有限的粘附。在滑动过程中,Cr从磨损表面脱离,导致该样品的体积损失更高。 (C)2015 Elsevier B.V.保留所有权利。

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