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Research On HVOF Thermal Sprays. Final Technical Report

Technical Report ·
DOI:https://doi.org/10.2172/895627· OSTI ID:895627
 [1]
  1. Pennsylvania State University, University Park, PA

Independent control of particle velocity and temperature in the HVOF process has been achieved in this research, allowing the variables to change by 170 m/s and 200{degree}C, respectively. The independence was achieved using a specially designed nozzel with multiple axial injection ports, and with an inert diluent added to the oxygen used for combustion. With these changes, notable changes in splat morphology, porosity, and coating oxidation are readily apparent. Increased particle velocity correlates with improved splat deformation, but appears to have little effect on porosity or oxidation. Particle temperature, however, correlates strongly with splat deformation, porosity, and oxidation. In fact, highly dense coatings that have little oxidation can be formed with relatively low velocity particles that have average temperatures in the vicinity of the melting point of the material. This surprising result suggests particle temperature control is the key to creating dense, low-oxide HVOF-sprayed coatings.

Research Organization:
The Pennsylvania State University, University Park, PA
Sponsoring Organization:
USDOE - Office of Energy Research (ER)
DOE Contract Number:
FG02-92ER14302
OSTI ID:
895627
Country of Publication:
United States
Language:
English

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