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Elastic and plastic work of indentation as a characteristic of wear behavior for cutting tools with nitride PVD coatings

机译:压痕弹性和塑料工作作为用氮化物PVD涂层切削刀具的磨损行为的特征

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The chemical and phase composition as well as the structural characteristics of TiN-based PVD versus the nitrogen pressure used during deposition coatings were analyzed using AES and XRD methods. Also the friction and wear properties of the coatings were established under different wear conditions. Using these results a relation between the TiN PVD coating’s wear resistance and its ability to dissipate the energy of plastic deformation as well as to accumulate the energy of elastic deformation were obtained by using a nano-indentation method. Based on this work a microhardness dissipation parameter (MDP) was developed to serve as an indicator of a coating’s durability. MDP is a ratio of the energy of dissipation to the total energy associated with elastic-plastic deformation measured during nanoindentation. An optimal range of MDP for TiN PVD coating was suggested for different wear modes experienced by cutting and stamping tools. The connection between MDP and the hardness-elastic modulus (H/E) ratio was also considered.
机译:使用AES和XRD方法分析化学和相组合物以及锡基PVD与沉积涂层中使用的氮压力的结构特征。此外,在不同的磨损条件下建立涂层的摩擦和磨损性能。使用这些结果通过使用纳米缩进方法获得锡PVD涂层耐磨性和散热能力之间的能力以及积聚弹性变形的能量的关系。基于这项工作,开发了微硬度耗散参数(MDP)用作涂层耐用性的指标。 MDP是耗散能量与在纳米狭窄期间测量的弹性变形相关的总能量的比率。针对切割和冲压工具经历的不同磨损模式,提出了用于锡PVD涂层的最佳MDP的最佳范围。还考虑了MDP与硬度 - 弹性模量(H / E)比率之间的连接。

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