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Pure Appl. Chem., 2008, Vol. 80, No. 9, pp. 1981-1991

Modeling time-dependent phenomena in plasma spraying of liquid precursors

Armelle Vardelle, Christophe Chazelas, Cecile Marchand and Gilles Mariaux

Laboratoire Sciences des Procédés Céramiques et des Traitements de Surface, CNRS University of Limoges, Limoges, France

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  • Soysal D., Arnold J., Szabo P., Henne R., Ansar S. A.: Thermal Plasma Spraying Applied on Solid Oxide Fuel Cells. J Therm Spray Tech 2013, 22, 588. <>
  • Shan Y.G., Wang Y.L., Coyle T.: Analysis of deposits formation in plasma spraying with liquid precursors. Applied Thermal Engineering 2013, 51, 690. <>
  • Shigeta Masaya: Three-dimensional flow dynamics of an argon RF plasma with dc jet assistance: a numerical study. J. Phys. D: Appl. Phys. 2013, 46, 015401. <>
  • Havrys’ O. P.: System of generalized nonlinear boundary conditions of a boundary-value problem of heat conduction for a layer under two-sided local high-temperature deposition of coatings. J of Math Sciences 2012, 180, 187. <>
  • Shigeta Masaya: Time-dependent 3D simulation of an argon RF inductively coupled thermal plasma. Plasma Sources Sci. Technol. 2012, 21, 055029. <>
  • Killinger Andreas, Gadow Rainer, Mauer Georg, Guignard Alexandre, Vaßen Robert, Stöver Detlev: Review of New Developments in Suspension and Solution Precursor Thermal Spray Processes. J Therm Spray Technol 2011, 20, 677. <>
  • Vert R., Chicot D., Dublanche-Tixier C., Meillot E., Vardelle A., Mariaux G.: Adhesion of YSZ suspension plasma-sprayed coating on smooth and thin substrates. Surface Coatings and Technology 2010, 205, 999. <>
  • Cetegen Baki M., Basu Saptarshi: Review of Modeling of Liquid Precursor Droplets and Particles Injected into Plasmas and High-Velocity Oxy-Fuel (HVOF) Flame Jets for Thermal Spray Deposition Applications. J Therm Spray Technol 2009, 18, 769. <>