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Surface Fatigue Behaviour Mapping of PVD Coatings for Mechanical Purposes

机译:机械用途PVD涂层的表面疲劳行为映射

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Most mechanical components used for transmission of movement are subjected to repeated impacts or cyclic stress. If these elements are well designed and the materials well chosen, their durability is linked to surface fatigue mechanisms. In order to improve the fatigue behaviour of these parts, hard coatings, such as physical vapour deposition (PVD) or plasma-assisted chemical vapour deposition (PACVD) coatings, can be appropriate. Unfortunately, such hard coatings cannot be used for elements whose replacement is more difficult than, say, cutting tools. An understanding of failure mechanisms should make it possible to optimise the fatigue behaviour of hard coatings. In order to study the surf ace fatigue behaviour of thin, hard PVD coatings, a special apparatus has been developed to carry out repeated impacts over a broad range of speeds. The possibility of mapping the fatigue behaviour of different coatings is illustrated through the examples of TiN and TiN/CrN multilayer coatings of different thicknesses deposited on several substrates.
机译:用于传递运动的大多数机械组件会遭受反复的冲击或循环应力。如果这些元素设计合理且材料选择正确,则它们的耐用性与表面疲劳机理有关。为了改善这些零件的疲劳性能,硬涂层,例如物理气相沉积(PVD)或等离子辅助化学气相沉积(PACVD)涂层,可能是合适的。不幸的是,这种硬质涂层不能用于比切削工具更难更换的元件。对失效机理的理解应该使优化硬质涂层的疲劳性能成为可能。为了研究薄的硬质PVD涂层的表面疲劳行为,已经开发了一种特殊的设备来在广泛的速度范围内进行重复冲击。通过在几个基板上沉积不同厚度的TiN和TiN / CrN多层涂层的示例,说明了绘制不同涂层的疲劳行为的可能性。

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