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Reconstruction mechanisms of tantalum oxide coatings with low concentrations of silver for high temperature tribological applications

机译:用于高温摩擦学应用的低浓度银的钽氧化物涂层的重建机理

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摘要

Silver tantalate (AgTaO3) coatings have been found to exhibit outstanding tribological properties at elevated temperatures. To understand the mechanisms involved in the tribological behavior of the Ag-Ta-O system, tantalum oxide coatings with a small content of silver were produced to investigate the metastable nature of this self-lubricating material. The coatings were produced by unbalanced magnetron sputtering, ball-on-disk wear tested at 750 °C, and subsequently characterized by X-ray diffraction, Scanning Auger Nanoprobe, cross-sectional Scanning Electron Microscopy, and Transmission Electron Microscopy. Complementary molecular dynamic simulations were carried out to investigate changes in the chemical and structural properties at the interface due to sliding for films with varying silver content. Both the experimental characterization and the theoretical modeling showed that silver content affects friction and wear, through the role of silver in film reconstruction during sliding. The results suggest that the relative amount of silver may be used to tune film performance for a given application.
机译:已发现钽酸银(AgTaO3)涂层在高温下具有出色的摩擦学性能。为了了解涉及Ag-Ta-O系统的摩擦学行为的机理,生产了少量银的氧化钽涂层,以研究这种自润滑材料的亚稳态性质。涂层是通过不平衡磁控溅射,在750°C下进行的圆盘磨损测试,随后通过X射线衍射,扫描俄歇纳米探针,截面扫描电子显微镜和透射电子显微镜进行表征的。进行了互补的分子动力学模拟,以研究由于含银量不同的薄膜滑动而引起的界面化学和结构性质的变化。实验特征和理论模型均表明,银含量通过银在滑动过程中薄膜重建中的作用而影响摩擦和磨损。结果表明,对于给定的应用,银的相对量可用于调节膜性能。

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