Microstructure, mechanical and electrochemical properties evaluation of pulsed DC reactive magnetron sputtered nanostructured Cr-Zr-N and Cr-Zr-Si-N thin films

被引:19
|
作者
Lee, Jyh-Wei [1 ,2 ]
Chang, Shih-Tien [3 ]
Chen, Hsien-Wei [4 ]
Chien, Chi-Hong [5 ]
Duh, Jenq-Gong [4 ]
Wang, Chaur-Jeng [3 ]
机构
[1] Mingchi Univ Technol, Dept Mat Engn, Taipei, Taiwan
[2] Mingchi Univ Technol, Ctr Thin Film Technol & Applicat, Taipei, Taiwan
[3] Natl Taiwan Univ Sci & Technol, Dept Mech Engn, Taipei, Taiwan
[4] Natl Tsing Hua Univ, Dept Mat Sci & Engn, Hsinchu, Taiwan
[5] Tungnan Univ, Dept Mech Engn, Taipei, Taiwan
来源
SURFACE & COATINGS TECHNOLOGY | 2010年 / 205卷 / 05期
关键词
Cr-Zr-Si-N thin film; Cr-Zr-N thin film; Pulsed DC reactive magnetron sputtering; Toughness; Wear; Corrosion; INDUSTRIAL APPLICATIONS; NANOCOMPOSITE COATINGS; BEHAVIORS; SYSTEM;
D O I
10.1016/j.surfcoat.2010.09.005
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Cr-Zr-Si-N thin films with various Zr contents were deposited by a bipolar asymmetric pulsed DC reactive magnetron sputtering system. In addition, a Cr-Zr-N film without Si addition was fabricated as a reference. The influence of Zr on the constitution, microstructure, mechanical, tribological and electrochemical properties of Cr-Zr-Si-N films was investigated. The microstructure of thin films was determined by a glancing angle X-ray diffractometer (GA-XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM), respectively. A nanoindenter, a Vickers micro hardness tester and pin-on-disk wear tests were adopted to evaluate the hardness, toughness and tribological properties of thin films, respectively. The electrochemical properties of thin films were also evaluated in 3.5 wt.% NaCl aqueous solution. In case of the Cr-Zr-Si-N films, the Si content was fixed around 6-8 at.% and various Zr contents ranging from 0.5 to 13.6 at.% were achieved by changing the Zr target power density. In comparison to the Cr-Zr-N reference film, the addition of similar to 7.0 at% Si in Cr-Zr-Si-N films resulted in a refined columnar structure and enhanced mechanical and anti-corrosion properties. A lattice constant expansion of these films was observed with increasing Zr content. A nanostructured thin film with around 5-10 nm grain size was obtained in case of a Cr-13.6 at.% Zr-6.8 at.% Si-N film. In general, the hardness, plastic deformation resistance and corrosion resistance increased also with increasing Zr content in the Cr-Zr-Si-N films. The Cr-Zr-Si-N film containing 13.6 at.% Zr exhibited a combination of high hardness, good mechanical properties, adequate tribological performance and excellent corrosion resistance in this study. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:1331 / 1338
页数:8
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