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Micro and Macro-Tribology Behavior of a Hierarchical Architecture of a Multilayer TaN/Ta Hard Coating

机译:多层棕褐色/ TA硬涂层的分层架构的微观和宏观摩擦学行为

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The micro- and macro-tribological behaviors of a novel hierarchical TaN/Ta coating deposited on Ti6Al4V biomedical alloy by direct current magnetron sputtering were analyzed in the present work. This analysis was associated with the morphological, structural, and mechanical properties, as well as the roughness changes during and after the tribological tests. The wear track of the coating after the macro-tribology tests was evaluated by Raman spectroscopy in order to detect the compounds formed as a result of the tribo-reactions that occurred during the tests. Micro- and macro-tribology behaviors showed a significant wear rate reduction of the hierarchical coating in comparison to the Ti6Al4V substrate. For the case of the micro-tribology tests, this reduction was attributed to the high hardness of the coating (31.4 GPa); however, this hardness caused a considerable increment in the friction coefficient. On the other hand, the macro-tribology performance was associated with the hardness and the ability of the hierarchical architecture to prevent the propagation of cracks. Moreover, the friction coefficient increased considerably at the end of the test; this increment was associated with the tantalum oxides in the wear track detected by Raman spectroscopy.
机译:通过直接电流磁控溅射沉积在Ti6Al4V生物医学合金上沉积在Ti6Al4V生物医学合金上的新型分层TAN / TA涂层的微观和宏观 - 摩擦学行为。该分析与形态学,结构和机械性能相关,以及摩擦学检验期间和之后的粗糙度变化。通过拉曼光谱法评估宏观摩擦学检测后涂层的耐磨轨迹,以检测由于在试验期间发生的摩擦反应而形成的化合物。与Ti6Al4V衬底相比,微观和宏论行为显示了分层涂层的显着磨损率降低。对于微摩擦学测试的情况,这种减少归因于涂层的高硬度(31.4GPa);然而,这种硬度在摩擦系数中导致相当大的增量。另一方面,宏观摩擦学性能与分层架构防止裂缝传播的硬度和能力相关。此外,在测试结束时,摩擦系数显着增加;该增量与拉曼光谱检测的磨损轨道中的钽氧化物相关联。

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