4.7 Article

Microstructure, oxidation resistance, mechanical and tribological properties of Ti-Y-N films by reactive magnetron sputtering

期刊

SURFACE & COATINGS TECHNOLOGY
卷 283, 期 -, 页码 311-317

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.surfcoat.2015.10.068

关键词

Reactive magnetron sputtering; Ti-Y-N films; Oxidation resistance; Tribological properties

资金

  1. National Natural Science Foundation of China [51074080, 51374115, 51574131]
  2. Nature Science Foundation Jiangsu Province [BK2008240]
  3. Research Innovation Program for College Graduates of Jiangsu Province [CXZZ12_0717]
  4. combined study of Industry University Research of Jiangsu Province [BY2013066-11]

向作者/读者索取更多资源

Composite Ti-Y-N films with various Y contents (0-7.8 at.%) were deposited by reactive magnetron sputtering to investigate the crystal structure, oxidation resistance, mechanical and tribological properties. A combination of Xray diffraction (XRD). Raman spectroscopy and high resolution transmission electron microscopy (HRTEM) analyses showed that substitutional solid solution of Ti-Y-N is formed by substitution of Ti in TIN lattice by Y and all films exhibit a single-phase face-centered cubic (fcc) structure. The oxidation resistance temperature of Ti-Y-N films increased gradually from 560 degrees C at 0 at% Y to 680 degrees C at 7.8 at.% Y. As V was incorporated into TiN film, the hardness and elastic modulus of the films increased gradually from 21.7 GPa and 302 GPa at 2.9 at% Y to 23.8 GPa and 316 GP at 7.8 at% Y. The improvement of hardness was attributed to solid solution strengthening and finegrain strengthening. Tribological properties of Ti-Y-N films performed using dry sliding friction and wear tests against Al2O3 depended on Y, content to a large extent. The average friction coefficient and wear rate of Ti-Y-N films decreased from about 0.32 and 7.7 x 10(-7) m(3)/N.m at 2.9 at.% Y to about 0.20 and 6.8 x 10(-7) m(3)/N.m at 7.8 at.% Y. Optical microscope and Raman spectroscopy measurements revealed that the decreasing amount of tribo-film TiO2 and Y2O3 detected on the surface of the wear tracks could lead to the friction coefficient curve stay constant and decrease the friction coefficients. Moreover, the incorporation of Y into TIN matrix induced the films to undergo a transition from serve wear to mild wear. (C) 2015 Elsevier B.V. All rights reserved.

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