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添加金属或非金属元素对CrN涂层表面形貌和力学性能的影响。

Effect of Metallic or Non-Metallic Element Addition on Surface Topography and Mechanical Properties of CrN Coatings.

作者信息

Kuznetsova Tatyana, Lapitskaya Vasilina, Khabarava Anastasiya, Chizhik Sergei, Warcholinski Bogdan, Gilewicz Adam, Kuprin Aleksander, Aizikovich Sergei, Mitrin Boris

机构信息

Nanoprocesses and Technology Laboratory, A.V. Luikov Heat and Mass Transfer Institute of the National Academy of Science of Belarus, 15 P. Brovki str., 220072 Minsk, Belarus.

Faculty of Mechanical Engineering, Koszalin University of Technology, 2 Sniadeckich, 75-453 Koszalin, Poland.

出版信息

Nanomaterials (Basel). 2020 Nov 27;10(12):2361. doi: 10.3390/nano10122361.

Abstract

Alteration of the phase composition of a coating and/or its surface topography can be achieved by changing the deposition technology and/or introducing additional elements into the coating. Investigation of the effect of the composition of CrN-based coatings (including AlCrN and CrON) on the microparticle height and volume, as well as the construction of correlations between the friction coefficient at the microscale and the geometry of microparticles, are the goals of this study. We use atomic force microscopy (AFM), which is the most effective method of investigation with nanometer resolution. By revealing the morphology, AFM allows one to determine the diameter of the particles, their heights and volumes and to identify different phases in the studied area by contrasted properties. The evaluation of the distribution of mechanical properties (modulus of elasticity and microhardness ) on the surfaces of multiphase coatings with microparticles is carried out by using the nanoindentation method. It is found that the roughness decreases with an increase in the Al concentration in AlCrN. For the CrON coatings, the opposite effect is observed. Similar conclusions are valid for the size of the microparticles and their height for both types of coating.

摘要

通过改变沉积技术和/或在涂层中引入额外元素,可以实现涂层相组成和/或其表面形貌的改变。研究基于CrN的涂层(包括AlCrN和CrON)的成分对微粒高度和体积的影响,以及构建微观尺度下摩擦系数与微粒几何形状之间的相关性,是本研究的目标。我们使用原子力显微镜(AFM),它是具有纳米分辨率的最有效研究方法。通过揭示形态,AFM可以确定颗粒的直径、高度和体积,并通过对比特性识别研究区域中的不同相。使用纳米压痕法对具有微粒的多相涂层表面的力学性能(弹性模量和显微硬度)分布进行评估。结果发现,AlCrN中Al浓度增加时粗糙度降低。对于CrON涂层,观察到相反的效果。对于这两种类型的涂层,关于微粒尺寸及其高度也有类似的结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c647/7761171/bf64022c646d/nanomaterials-10-02361-g001.jpg

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