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On the wear of PVD-coated HSS hobs in dry gear cutting

机译:关于干齿轮切削中涂有PVD涂层的HSS滚刀的磨损

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摘要

A hob is an advanced gear cutting tool usually made of homogenous high-speed steel (HSS) and coated by physical vapour deposition (PVD). It is designed for regrinding and recoating many times. However, hobs of today suffer from unpredictable wear making it difficult to schedule when they should be taken out for reconditioning. This investigation is aimed to contribute to the fundamental knowledge of the wear mechanisms and wear propagation of hobs used in dry gear cutting. Two AlCrN-coated hobs, used in actual gear cutting, were investigated by scanning electron microscopy (SEM) to study the tool topography, light optical microscopy (LOM) to study metallographic cross-sections and by X-ray photoelectron spectroscopy (XPS) for surface analyses. It is concluded that the high potential of PVD-coated HSS as tool material is not taken full advantage of. The main reason is a combination of a poor surface preparation prior to coating and excessively high compressive residual stresses, making parts of the coating detach along the edge line even on unused cutting teeth. During cutting, the high intrinsic stresses in combination with droplets and defects in the coating facilitated its fragmentation through decohesion and detachment. Simultaneously, the rake face is gradually covered by a thin oxide layer dominated by Fe, Cr and Mn in about equal amounts, and also with a significant content of Si. It is believed but not proved that this layer is beneficial. To improve service life and reliability of gear cutting hobs, precautions should be taken for the grinding-polishing preparation prior to PVD-coating to ensure a smooth substrate free from burning damage and other defects. Also, the edge radius and coating thickness has to be matched with the magnitude of compressive residual stresses in the coating.
机译:滚刀是一种高级齿轮切削刀具,通常由均质高速钢(HSS)制成并通过物理气相沉积(PVD)进行涂层。它设计用于多次重涂和重涂。然而,当今的炉架遭受不可预测的磨损,使得难以安排何时将它们取出进行翻新。这项研究旨在为干式齿轮切割中所用滚刀的磨损机理和磨损传播的基础知识做出贡献。通过扫描电子显微镜(SEM)研究工具形貌,光学显微镜(LOM)研究金相截面以及X射线光电子能谱(XPS)研究了两个用于实际齿轮切削的AlCrN涂层滚刀。表面分析。结论是,没有充分利用PVD涂层HSS作为工具材料的高潜力。主要原因是涂层之前的表面准备不佳和过高的压缩残余应力,甚至在未使用的切削齿上,涂层的一部分也会沿边缘线分离。在切割过程中,高的固有应力与涂层中的液滴和缺陷相结合,促使其通过脱粘和分离而破碎。同时,前刀面逐渐被一层薄薄的氧化层覆盖,该氧化层由Fe,Cr和Mn所占比例大致相等,并且还含有大量的Si。相信但未证明该层是有益的。为了提高齿轮切屑滚刀的使用寿命和可靠性,在PVD涂层之前应采取预防措施进行磨抛准备,以确保光滑的基材没有烧伤和其他缺陷。而且,边缘半径和涂层厚度必须与涂层中的压缩残余应力的大小相匹配。

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