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Improvement of structure and quality of nanoscale multilayered composite coatings, deposited by filtered cathodic vacuum arc deposition method

机译:过滤阴极真空电弧沉积法沉积纳米级多层复合涂层的结构和质量的改进

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摘要

This article studies the specific features of cathode vacuum arc deposition of coatings used in the production of cutting tools. The detailed analysis of the major drawbacks of arc-Physical Vapour Deposition (PVD) methods has contributed to the development of the processes of filtered cathodic vacuum arc deposition to form nanoscale multilayered composite coatings of increased efficiency. This is achieved through the formation of nanostructure, increase in strength of adhesion of coating to substrate up to 20%, and reduction of such dangerous coating surface defects as macro- and microdroplets up to 80%. This article presents the results of the studies of various properties of developed nanoscale multilayered composite coating. The certification tests of carbide tool equipped with cutting inserts with developed nanoscale multilayered composite coating compositions in longitudinal turning (continuous cutting) and end symmetric milling, and intermittent cutting of steel C45 and hard-to-cut nickel alloy of NiCr20TiAl showed advantages of tool with nanoscale multilayered composite coating as compared to the tool without coating. The lifetime of the carbide inserts with developed NMCC based on the system of Ti-TiN-(NbZrTiCr)N (filtered cathodic vacuum arc deposition) was increased up to 5-6 times in comparison with the control tools without coatings and up to 1.5-2.0 times in comparison with nanoscale multilayered composite coating based on the system of Ti-TiN-(NbZrTiCr)N (standard arc-PVD technology). © The Author(s) 2017.
机译:本文研究了用于切削工具生产中的涂层的阴极真空电弧沉积的特定特征。电弧物理气相沉积(PVD)方法主要缺点的详细分析有助于发展过滤阴极真空电弧沉积工艺,以形成效率更高的纳米级多层复合涂层。这是通过形成纳米结构,将涂层与基材的粘合强度提高到20%以及将危险的涂层表面缺陷(如大液滴和微滴)减少到80%来实现的。本文介绍了已开发的纳米级多层复合涂层的各种性能的研究结果。硬质合金刀具在纵向车削(连续切削)和端部对称铣削中配备了带有已开发的纳米级多层复合涂层成分的切削刀片的硬质合金测试,以及对C45钢和NiCr20TiAl难切削镍合金的间歇切削,证明了刀具的优势与没有涂层的工具相比,纳米级多层复合涂层。与不带涂层的控制工具相比,基于Ti-TiN-(NbZrTiCr)N(过滤阴极真空电弧沉积)系统开发的NMCC的硬质合金刀片的使用寿命提高了5-6倍,并且达到了1.5-与基于Ti-TiN-(NbZrTiCr)N(标准arc-PVD技术)的纳米级多层复合涂层相比是2.0倍。 ©作者2017。

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