450
Views
22
CrossRef citations to date
0
Altmetric
Original Articles

Phase stabilization of plasma-sprayed alumina coatings by spraying mechanically blended alumina–chromia powders

, &
Pages 355-364 | Received 08 Feb 2016, Accepted 28 May 2016, Published online: 14 Oct 2016

References

  • Davis, J.R. Ed. Handbook of Thermal Spray Technology. ASM International; Materials Park, OH, USA, 2004.
  • McPherson, R. On the formation of thermally sprayed alumina coatings. Journal of Materials Science 1980, 15, 3141–3149.
  • Gualtieri, M.L.; Prudenziati, M.; Gualtieri, A.F. Quantitative determination of the amorphous phase in plasma sprayed alumina coatings using the Rietveld method. Surface and Coatings Technolog 2006, 201, 2984–2989.
  • Sabiruddin, K.; Joardar, J.; Bandyopadhyay, P.P. Analysis of phase transformation in plasma sprayed alumina coatings using Rietveld refinement. Surface and Coatings Technology 2010, 204, 3248–3253.
  • Devasenapathi, A.; Ang, C.B.; Yu, S.C.M.; Ng, H.W. Role of particle injection velocity on coating microstructure of plasma sprayed alumina-validation of process chart. Surface and Coatings Technology 2001, 139, 44–54.
  • Chraska, P.; Dubsky, J.; Neufuss, K.; Pisacka, J. Alumina-base plasma-sprayed materials Part I: Phase stability of alumina and alumina-chromia. Journal of Thermal Spray Technology 1997, 6, 320–326.
  • Marple, B.R.; Voyer, J.; Bechard, P. Sol infiltration and heat treatment of alumina-chromia plasma-sprayed coatings. Journal of the European Ceramic Society 2001, 21, 861–868.
  • Costil, S.; Normand, B.; Coddet, C.; Vannes, A.B. Alumina plasma sprayed coatings submitted to cyclic tribological solicitations: Effect of TiO2 content. International Thermal Spray Conference, Lugscheider E, Berndt CC. Eds., Essen, Germany: Dusseldorf, DVS-Verlag, 944–948, 2002.
  • Kreye, H. Preparation of alumina coatings with improved properties, University of the Federal Armed Forces Hamburg, Institute for Materials Technologies, Final Report, AiF founded Project No. 11.466 N, in German 1999.
  • Dubsky, J.; Brozek, V.; Kolman, B.; Chraska. P. Stabilization of α-Al2O3 plasma sprayed coatings by chromia, Ceramics, adding the value: AUSTCERAM 92, International Ceramic Conference, M.J. Bannister, Ed., Melbourne, 1992, 793–797.
  • Ilavsky, J.; Berndt, C.C.; Herman, H.; Chraska, P.; Dubsky, J. Alumina-base plasma-sprayed materials - part II: Phase transformations in aluminas. Journal of Thermal Spray Technology 1997, 6 (4), 439–444.
  • Ageorges, H.; Ctibor, P. Comparison of the structure and wear resistance of Al2O3-13 wt.%TiO2 coatings made by GSP and WSP plasma process with two different powders. Surface and Coatings Technolog 2008, 202 (18), 4362–4368.
  • Tian, W.; Wang, Y.; Yang, Y.; Li, C. Toughening and strengthening mechanism of plasma sprayed nanostructured Al2O3-13 wt.%TiO2 coatings. Surface and Coatings Technology 2009, 204 (5), 642–649.
  • Venkataraman, R.; Krishnamurthy, R. Evaluation of fracture toughness of as plasma sprayed alumina-13 wt.% titania coatings by micro-indentation techniques. Journal of the European Ceramic Society 2006, 26 (15), 3075–3081.
  • Yang, K.; Zhou, X.; Zhao, H.; Tao, S. Microstructure and mechanical properties of Al2O3-Cr2O3 composite coatings produced by atmospheric plasma spraying. Surface and Coatings Technology 2011, 206, 1362–1371.
  • Yang, K.; Feng, J.; Zhou, X.; Tao, S. Microstructural characterization and strengthening-toughening mechanism of plasma-sprayed Al2O3-Cr2O3 composite coatings. Journal of Thermal Spray Technology 2012, 21, 1011–1024.
  • Stahr, C.C.; Saaro, S.; Berger, L.M.; Dubsky, J.; Neufuss, K.; Herrmann, M. Dependence of the stabilization of α -alumina on the spray process. Journal of Thermal Spray Technology 2007, 16, 822–830.
  • Dubsky, J.; Chraska, P.; Kolman, B.; Stahr, C.C.; Berger, L.M. Phase formation control in plasma sprayed alumina-chromia coatings. Ceramics Silikaty 2011, 55, 294–300.
  • Dudina, D.V.; Batraev, I.S.; Ulianitsky, V.Y.; Bulina, N.V.; Korchagin, M.A.; Lomovsky, O.I. Detonation spraying of Ti-Al intermetallics: Phase and microstructure development of the coatings. Materials and Manufacturing Processes 2015, 30, 724–729.
  • Hill, R.J.; Howard, C.J. Peak shape variation in fixed-wavelength neutron powder diffraction and its effect on structural parameters obtained by Rietveld analysis. Journal of Applied Crystallography 1985, 18, 173–180.
  • McCusker, L.B.; Von Dreele, R.B.; Cox, D.E.; Louer, D.; Scardi, P. Rietveld refinement guidelines. Journal of Applied Crystallography 1999, 32, 36–50.
  • McPherson, R. The structure of Al2O3-Cr2O3 powders condensed from plasma. Journal of Materials Science 1973, 8, 859–862.
  • Sarikaya, O. Effect of some parameters on microstructure and hardness of alumina coatings prepared by the air plasma spraying process. Surface and Coatings Technolog 2005, 190, 388–393.
  • Cullity, B.D. Elements of X-ray Diffraction. Addison-Wesley Publishing Company, Inc. Reading, MA, 1956.
  • Davies, T.J.; Emblem, H.G.; Nwobodo, C.S.; Ogwu, A.A.; Tsantzalou, V. Preparation and properties of some alumina-chromia refractories. Journal of Materials Science 1991, 26, 1061–1068.
  • Watanabe, M.; Hirayama, T.; Yoshinaka, M.; Hirota, K.; Yamaguchi, O. Formation of continuous series of solid solutions from powders prepared by hydrazine Method: The system Cr2O3-Al2O3. Materials Research Bulletin 1996, 31, 861–868.
  • Brook, R.J. Ed. Concise Encyclopedia of Advanced Ceramic Materials. Pergamon Press plc. Headington Hill Hall, Oxford, England, 1991.
  • Yang, K.; Zhou, X.; Liu, C.; Tao, S.; Ding, C. Sliding wear performance of plasma-sprayed Al2O3-Cr2O3 composite coatings against graphite under severe conditions. Journal of Thermal Spray Technology 2013, 22 (7), 1154–1162.
  • Zhang, M.; Efremov, M.Y.; Schiettekatte, F.; Olson, E.A.; Kwan, A.T.; Lai, S.L.; Wisleder, T.; Allen, L.H. Size-dependent melting point depression of nanostructures: Nanocalorimetric measurements. Physical Review B 2000, 62, 10548–10557.
  • Mei, Q.S.; Lu, K. Melting and superheating of crystalline solids: From bulk to nanocrystals. Progress in Materials Science 2007, 52, 1175–1262.
  • Chatterjee, S.; Dutta Majumdar, J.; Singaiah, K.; Shariff, S.M.; Padmanabham, G.; Roy Choudhury, A. Performance evaluation of laser surface alloyed hard nanostructured Al2O3-TiB2-TiN composite coatings with in-situ and ex-situ reinforcements. Surface and Coatings Technology 2011, 205, 3478–3484.
  • Akgun, S.; Sahin, S.; Ustel, F. Wear behavior of plasma-sprayed Al-12Si/SiC composite coatings under dry and water-lubricated sliding. Materials and Manufacturing Processes 2009, 24, 909–912.
  • Sasaki, S. Tribological evaluation of plasma sprayed coatings for high temperature sliding surface against cordierite. Materials and Manufacturing Processes 1999, 14, 185–194.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.