Surface topography and physicochemistry of silver containing titanium nitride nanocomposite coatings

被引:9
|
作者
Whitehead, Kathryn [1 ]
Kelly, Peter [2 ]
Li, Heqing [2 ]
Verran, Joanna [1 ]
机构
[1] Manchester Metropolitan Univ, Chem & Hlth Sci Surface Engn Grp, Sch Biol, Manchester M1 5GD, Lancs, England
[2] Manchester Metropolitan Univ, Surface Engn Grp, Manchester M1 5GD, Lancs, England
来源
基金
英国工程与自然科学研究理事会;
关键词
atomic force microscopy; free energy; grain size; nanocomposites; scanning electron microscopy; silver; sputtered coatings; surface roughness; surface topography; titanium compounds; wear resistant coatings; X-ray chemical analysis; CONTACT; HYDROPHOBICITY; RESISTANCE; IMPLANTS; ADHESION;
D O I
10.1116/1.3293232
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Titanium nitride (TiN) is a hard, wear-resistant coating material, which is widely applied to components operating in an abrasive wear environment. When codeposited with silver, the coating forms a nanocomposite structure consisting of nanoparticles of silver embedded in a TiN matrix. TiN/Ag coatings were deposited by cosputtering onto bright annealed stainless steel substrates. By control of the target powers, the silver content of the films was varied in the range of 0-16.7 at. %. The films were characterized using scanning electron microscopy (structure), energy dispersive x-ray spectroscopy (chemical composition), white light profilometry (roughness), atomic force microscopy (topography), and physicochemistry (Delta G(iwi), gamma(s), gamma(LW)(s), gamma(AB)(s), gamma(+)(s), and gamma(-)(s)). Silver was heterogeneously distributed throughout the TiN matrix, and increasing the silver content in the TiN surfaces resulted in changes in surface nanotopographies with respect to surface features, grain sizes, and physicochemistry. In particular, a silver concentration of 16.7 at. % resulted in a distinct change in surface nanotopography and features, which were qualitatively demonstrated using visual images, linear profiles, and quantitatively using R-p, R-pm, R-z, and R-t roughness parameters. There were also some changes in gamma(-)(s) with increased silver content. When producing novel surfaces, changes in surface chemistry affect other surface parameters. A thorough analysis of surface parameters is essential since changes may affect the potential end use of the product.
引用
收藏
页码:180 / 187
页数:8
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