The experimental resistance parameter for TiN coating to cavitation action
By: Alicja Krella
Open Access
|Jun 2010References
- Brennen Ch.E., Cavitation and bubble dynamics, The Oxford Engineering Science Series 44, Oxford University Press (1995).
- Knapp R. T., Resent Investigations of cavitation and cavitation damage, Trans. ASME 77 (1955) 1045-1054.
- Philipp A., Lauterborn W., Cavitation erosion by single laser-produced bubbles, J. Fluid Mech. 361 (1998) 75-116.
- Bourne N. K., On the collapse of cavities, Shock Waves 11 (2002) 447-455.
- Tabor D.: A theory of static and dynamic hardness. Engineering 165 (1948) 289-292.
- Bourne N. K., Millett J. C. F., Gray III G. T., On the shock compression of polycrystalline metals, J. Mater. Sci. 44 (2009) 3319-3343.
- Krella A., Influence of cavitation intensity on X6CrNiTi18-10 stainless steel performance in the incubation period. Wear 258 (2005) 1723-1731.
- Iwai Y., Honda T., Yamaa H., Matsumura T., Larsson M., Hogmark S.: Evaluation of wear resistance of thin hard coatings by a new solid particle impact test. Wear (2001),pp. 861-867.
- Yoon S. Y., Yoon S. Y., Chung W. S., Kim K. H.: Impact-wear behaviors of TiN and Ti-Al-N coatings na AISI D2 steel and WC-Co substrates. Surface and Coating Technology 177-178 (2004), pp. 645-650.
- Voevodin A. A., Bantle R., Matthews A.: Dynamic impact wear of TiCNand Ti-DLC composite coatings. Wear 185 (1995), pp. 151-157.
- Cairney J. M., Tsukano R., Hoffman M. J., Yang M.: Degradation of TiN coating under cyclic loading. Acta Materialia 52 (2004), pp. 3229-3237.
- Ma L. W., Cairney J. M., Hoffman M., Munroe P. R.: Deformation mechanisms operating nanoindentation of TiN coatings on steel substrates. Surface & Coatings Technology 192 (2005), pp. 11-18.
- Münsterer S., Kohlhof K.: Cavitation protection by low temperature TiCN coatings. Surface and Coatings Technology 74-75 (1995), pp. 642-647
- Marynin V. H.: Erosion of vacuum-arc Ti-N coatings. Materials Science 39 (2003), pp. 447-451
- Krella A., Czyżniewski A.: Influence of the substrate hardness on cavitation erosion resistance of TiN coating. Wear 263 (2007), pp. 395-401.
- Krella A., Czyżniewski A.: Investigation concerning the cavitation resistance of TiN coatings deposited on austenitic stainless steel at various temperatures. Wear 265 (2008), pp. 72-80.
- Leyland A., Matthews A.: On the significance of the H/E ratio in wear control: a nanocomposite coating approach to optimized tribological behaviour. Wear 246 (2000), pp. 1-11.
- Krella A., The influence of TiN coatings properties on cavitation erosion resistance, Surface & Coatings Technology 204 (2009) pp. 263-270.
- Han S., Lin J. H., Kuo J. J., He J. L., Shih H. C.: The cavitation-erosion phenomenon of chromium nitride coatings deposited using cathodic arc plasma deposition on steel. Surface and Coating Technology 161 (2002), pp. 20-25.
- Oliver W. C., Pharr G. M.: An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments. J Mater Res 7 (1992), pp. 1564-1583.
- Batista C. A., Godoy C., Matthews A., Impact testing of duplex and non-duplex (TiN, Al)N and Cr-N PVD coatings, Surface and Coatings Technology 163-164 (2003), pp. 353-361.
- Krella A.: Cavitation resistance of TiN nanocrystalline coatings with various thickness, Advances in Materials Science. Vol. 9, No. 2 (20), June 2009, pp. 12-24.
Language: English
Page range: 4 - 18
Published on: Jun 23, 2010
Published by: Gdansk University of Technology
In partnership with: Paradigm Publishing Services
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© 2010 Alicja Krella, published by Gdansk University of Technology
This work is licensed under the Creative Commons License.