Extension of plasma-source ion implantation to ion-beam-enhanced deposition. Final report, 1 February-31 July 1989
The specific plans consist of the following activities: optimize conditions for elevated temperature PSII-IBED of nitride coatings of Ti, Cr, Nb, V, and Zr on test flats to establish the effectiveness of PSII in performing ion beam enhanced deposition; characterize coatings thus developed using test procedures for evaluating the wear, friction, corrosion, and rolling contract fatigue behavior; demonstrate the capability of elevated temperature PSII-IBED on a prototype component, and evaluate its performance; modify and refine our existing Monte Carlo code (TAMIX, developed here) for simulating the elevated-temperature PSII-IBED process and benchmark the code to ensure its predictive capability; and develop a detailed plasma simulation model of PSII to generate realistic ion current and energy distributions of ions to the target (to be used as input to the TAMIX code).
- Research Organization:
- Wisconsin Univ., Madison, WI (USA)
- OSTI ID:
- 6457173
- Report Number(s):
- AD-A-224462/2/XAB; CNN: DAAL03-89-K-0048
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
CHROMIUM NITRIDES
ENERGY BEAM DEPOSITION
EXPERIMENT PLANNING
NIOBIUM NITRIDES
TITANIUM NITRIDES
VANADIUM NITRIDES
ZIRCONIUM NITRIDES
COATINGS
CORROSION
DEPOSITION
DISTRIBUTION
ENERGY
FATIGUE
ION BEAMS
ION IMPLANTATION
MONTE CARLO METHOD
PERFORMANCE
PLASMA
PROGRESS REPORT
SIMULATION
BEAMS
CHEMICAL REACTIONS
CHROMIUM COMPOUNDS
DOCUMENT TYPES
MECHANICAL PROPERTIES
NIOBIUM COMPOUNDS
NITRIDES
NITROGEN COMPOUNDS
PLANNING
PNICTIDES
REFRACTORY METAL COMPOUNDS
SURFACE COATING
TITANIUM COMPOUNDS
TRANSITION ELEMENT COMPOUNDS
VANADIUM COMPOUNDS
ZIRCONIUM COMPOUNDS
360201* - Ceramics
Cermets
& Refractories- Preparation & Fabrication