首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Wear performance investigation of PVD coated and uncoated carbide tools during high-speed machining of TiAl6V4 aerospace alloy
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Wear performance investigation of PVD coated and uncoated carbide tools during high-speed machining of TiAl6V4 aerospace alloy

机译:TiAl6V4航空航天合金高速加工过程中PVD涂层和未涂覆硬质合金工具的磨损性能研究

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摘要

Selection of hard PVD coatings for the machining of Ti6Al4V alloy should be based on the dominant tool wear mechanism and tribological phenomena occurring at the chip-tool-workpiece interface. The present work investigates the effect of AlTiN and CrN hard coatings on the wear performance of cemented carbide cutting tools during high-speed finish turning of Ti6Al4V. The wear characteristics of the tools were evaluated by SEM and 3D wear volume measurements. The in-situ tribological performance of the coatings was characterized by chip morphology analysis, in combination with coefficient of friction measurements using a high temperature/heavy load tribometer that mimics actual machining conditions. Micro-mechanical characteristics of the coatings were also studied in detail. The results obtained show that the application of a CrN coating significantly improves tool performance due to a combination of the micro-mechanical properties of the coating and the tribological characteristics of the surface engineered layer.
机译:用于加工Ti6Al4V合金的硬质PVD涂层的选择应基于芯片工具工件界面发生的主要工具磨损机制和摩擦学现象。目前的作品研究了ALTIN和CRN硬涂层对Ti6Al4V的高速完成转动过程中硬质合金切割工具的磨损性能的影响。通过SEM和3D磨损体积测量评估工具的磨损特性。涂层的原位摩擦学性能是通过芯片形态分析的特征,结合使用高温/重负摩擦计的摩擦测量系数,以模仿实际加工条件。还详细研究了涂层的微机械特性。得到的结果表明,由于涂层的微机械性能和表面工程层的摩擦学特性,施加CRN涂层显着提高了工具性能。

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