<p><b>Abstract</b>—Two engineering criteria, namely, <i>N</i><sub>eff</sub>/(<i>Qd</i>) and <i>N</i><sub>eff</sub><i>K</i>/(<i>VB</i>), where <i>N</i><sub>eff</sub> is the effective thermal capacity of plasma jet at the plasma generator outlet, <i>Q</i> is the plasma-forming gas flow rate, <i>d</i> is the sprayed powder particle size, <i>K</i> is a coefficient, <i>V</i> is the plasma generator travel speed, and <i>B</i> is the monolayer width, are used in order to systemize the results of investigations performed in the field of thermal barrier plasma zirconia-based coatings.</p>

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Thermal Barrier Zirconia-Based Coatings

  • V. I. Kalita,
  • D. I. Komlev,
  • A. A. Radyuk

摘要

Abstract—Two engineering criteria, namely, Neff/(Qd) and NeffK/(VB), where Neff is the effective thermal capacity of plasma jet at the plasma generator outlet, Q is the plasma-forming gas flow rate, d is the sprayed powder particle size, K is a coefficient, V is the plasma generator travel speed, and B is the monolayer width, are used in order to systemize the results of investigations performed in the field of thermal barrier plasma zirconia-based coatings.