首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Bias voltage effect on the mechanical properties, adhesion and milling performance of PVD films on cemented carbide inserts
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Bias voltage effect on the mechanical properties, adhesion and milling performance of PVD films on cemented carbide inserts

机译:对碳化物碳化物插入物PVD薄膜的机械性能,粘附和研磨性能的偏置电压效应

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摘要

The potential of coated cutting inserts to withstand effectively cutting loads depends among others on the coating's mechanical properties and adhesion. These data are strongly affected by the applied PVD process parameters, even if the coatings comprise the same chemical composition. Hereupon, one significant parameter is the bias voltage during the film deposition. For detecting its effect on the occurring film mechanical properties, adhesion and wear behavior, PVD TiAlN coatings were deposited on cemented carbide inserts at diverse bias voltages. The properties of the manufactured coatings were determined via FEM-supported results evaluation of nanoindentations, perpendicular and inclined impact tests. Coatings produced at elevated bias voltage possess comparably increased mechanical properties and fatigue endurance. However, their adhesion deteriorates, thus reducing the coated inserts cutting performance especially when a good adhesion during a material removal process as in milling hardened steel is required. Relevant FEM calculations of this process were employed to explain the wear evolution on the flank and rake of the used coated tools considering their cutting edge geometry and their actual film's mechanical properties and adhesion dependent upon the applied bias voltage during the coating deposition.
机译:涂覆切削刀片的电位以承受有效的切割载荷在涂层的机械性能和粘附等方面取决于其他载荷。即使涂层包含相同的化学组成,这些数据也受应用的PVD工艺参数的强烈影响。本文,一个有效参数是胶片沉积期间的偏置电压。为了检测其对发生膜机械性能的影响,粘附和磨损行为,PVD TiAln涂层以各种偏置电压沉积在硬质合金刀片上。通过对纳米茚满,垂直和倾斜的冲击试验的FEM支持的结果评估确定制造涂层的性质。在升高的偏置电压下产生的涂层具有相对增加的机械性能和疲劳耐久性。然而,它们的粘附性劣化,从而减少了涂覆的插入切割性能,特别是当需要在材料去除过程中的良好粘合时,需要如铣削硬化钢。该过程的相关FEM计算用于解释所使用的涂层工具的侧面和耙耙的磨损进化,考虑到它们的切削刃几何形状及其实际薄膜的机械性能和取决于涂层沉积期间施加的偏置电压的粘附。

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