Influence of bias voltage on structure,mechanical and corrosion properties of reactively sputtered nanocrystalline TiN films

Nanocrystalline TiN films were prepared by DC reactive magnetron sputtering.The influence of substrate biases on structure,mechanical and corrosion properties of the deposited films was studied using X-ray diffraction,field emission scanning electron microscopy,nanoindentation and electrochemical te...

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Published inJournal of iron and steel research, international Vol. 24; no. 12; pp. 1223 - 1230
Main Authors He, Chun-lin, Zhang, Jin-lin, Ma, Guo-feng, Du, Zhao-fu, Wang, Jian-ming, Zhao, Dong-liang
Format Journal Article
LanguageEnglish
Published Singapore Elsevier Ltd 01.12.2017
Springer Singapore
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ISSN1006-706X
2210-3988
DOI10.1016/S1006-706X(18)30021-9

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Summary:Nanocrystalline TiN films were prepared by DC reactive magnetron sputtering.The influence of substrate biases on structure,mechanical and corrosion properties of the deposited films was studied using X-ray diffraction,field emission scanning electron microscopy,nanoindentation and electrochemical techniques.The deposited films have a columnar structure,and their preferential orientation strongly depends on bias voltage.The preferential orientations change from(200)plane at low bias to(111)plane at moderate bias and then to(220)plane at relatively high bias.Nanohardness H,elastic modulus E,H/E*and H3/E*2 ratios,and corrosion resistance of the deposited films increase first and then decrease with the increase in bias voltage.All the best values appear at bias of-120 V,attributing to the film with a fine,compact and less defective structure.This demonstrates that there is a close relation among microstructure,mechanical and corrosion properties of the TiN films,and the film with the best mechanical property can also provide the most effective corrosion protection.
Bibliography:Chun-lin He;Jin-lin Zhang;Guo-feng Ma;Zhao-fu Du;Jian-ming Wang;Dong-liang Zhao;Liaoning Provincial Key Laboratory of Advanced Materials,Shenyang University;Research Institute of Functional Materials,Central Iron & Steel Research Institute
11-3678/TF
ISSN:1006-706X
2210-3988
DOI:10.1016/S1006-706X(18)30021-9