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Substitution of commercially coated tungsten carbide tools in dry cylindrical turning process by HiPIMS coated niobium carbide cutting inserts

机译:HIPIMS涂层碳化铌切削刀片的干式圆柱转向过程中的商业涂层碳化钨工具

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摘要

The deposition of a thin film tool coating as wear resistant layer on tungsten carbide (WC) cutting tool material marks the industrial standard for machining of various workpiece materials. Recent developments on alternative cutting materials show the potential of niobium carbide (NbC) for machining of iron-based materials and its use in cutting tool applications. In this study the tool behavior of two NbC substrates, defined as NbC0.88-12Co and NbC1.0-12Ni4Mo4VC respectively, is compared to commercial, submicron grained WC-6Co tool material. The wear performance of uncoated and physical vapor depositioned (PVD) coated cutting tools is analyzed by scanning electron microscope (SEM), electron backscatter diffraction (EBSD) and energy-dispersive x-ray spectroscopy (EDS) during adhesion tests and machining trials of carbon steel C45E. In uncoated condition, NbC1.0-12No4Mo4VC shows an average increase of material removal V-w by 3% combined with a lower crater wear depth K-T by 32% compared to industrial WC-6Co standard. Although microstructural defects are evident in NbC substrates, a similar tool performance of coated NbC cutting tools attests the successful substitution of WC-6Co cutting tool material for industrial machining processes.
机译:薄膜刀具涂层如碳化钨耐磨层(WC)刀具材料马克工业标准的各种工件材料的加工的沉积。替代切削材料的最新进展显示的铁基材料及其在切削刀具应用加工碳化铌(NBC)的潜力。在这项研究中的NbC 2个基板,分别定义为NbC0.88-12Co和NbC1.0-12Ni4Mo4VC的工具的行为,进行比较,商业,亚微米晶粒WC-6CO刀具材料。 depositioned(PVD)涂覆的切削工具未涂覆和物理气相的磨损性能是通过扫描电子显微镜(SEM),电子背散射衍射(EBSD)和能量色散X射线光谱(EDS)在附着试验和碳的加工试验分析钢C45E。在未涂布的条件下,示出了NbC1.0-12No4Mo4VC V-W 3%的材料去除的平均增加相比于工业WC-6CO标准更低的月牙洼磨损深度为k-T 32%结合。虽然微结构缺陷的NbC底物是显而易见的,涂覆的NbC刀具类似的工具性能证明WC-6CO切削刀具材料的工业加工过程成功替换。

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