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首页> 外文期刊>Journal of Mechanical Science and Technology >Cutting performance and wear mechanisms of TiAlN PVD-coated cemented carbide tool in high speed turning of Ti-5Al-2Sn-2Zr-4Mo-4Cr alloy
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Cutting performance and wear mechanisms of TiAlN PVD-coated cemented carbide tool in high speed turning of Ti-5Al-2Sn-2Zr-4Mo-4Cr alloy

机译:TiAln PVD涂层硬质合金工具在Ti-5AL-2SN-2ZR-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4M-4MO-4MO-4MO-4MOP的性能和磨损机制

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摘要

The high-speed finish turning tests of Ti-17 titanium alloy (Ti-5Al-2Sn-2Zr-4Mo-4Cr) were carried out by using PVD cemented carbide tools with TiAlN coating. The machinability behaviors in terms of cutting forces, cutting temperatures, surface roughness, and tool service life were measured and evaluated under different machining parameter conditions, and the empirical prediction model of these variables were established depending on the cutting parameters. Incorporating the measured results of scanning electron microscopy (SEM) as well as energy dispersive spectroscopy (EDS), the initial tool wear patterns and the eventual wear patterns when the tool wear states meet the failure criteria were comparably investigated and analyzed. It was found that during the initial wear stage, the sticking wear zone and the sliding wear zone can be distinguished on the tool wear interface. The main wear patterns of are peeling off of coating material, crater wear of rake face, edge breakage and edge wear of tool tip after reaching the tool failure rejection criterion. The cutting tool wear mechanisms were systematically studied, and the results show that the wear mechanisms of a TiAlN PVD-coated carbide cutting tool in turning Ti-17 titanium alloy were dominated by the interaction wear effect among the adhesion, oxidation and diffusion between cemented carbide substrate and workpiece material.
机译:通过使用具有TiAln涂层的PVD硬质合金工具进行Ti-17钛合金(Ti-5AL-2SN-2ZR-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4CR)的高速完成转动试验。在切割力,切割温度,表面粗糙度和刀具使用寿命方面的可加工性行为在不同的加工参数条件下进行测量和评估,并且根据切割参数建立这些变量的经验预测模型。掺入扫描电子显微镜(SEM)的测量结果以及能量分散谱(EDS),初始工具磨损图案和最终磨损模式,当刀具磨损状态满足故障标准时相当地研究和分析。发现,在初始磨损阶段,粘贴磨损区和滑动磨损区可以在工具磨损界面上区分。主要磨损图案是剥离涂层材料,耙子面的火山口磨损,刀具尖端的边缘破裂和刀尖磨损后达到刀具故障排斥标准。系统地研究了切削刀具磨损机制,结果表明,在粘合碳化物之间的粘附,氧化和扩散之间的相互作用磨损中,TiAln PVD涂覆的碳化物切削工具的磨损机制在粘合,碳化物之间的粘附性,氧化和扩散中的相互作用磨损,基板和工件材料。

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