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NASA NTRS · 19790021211

Automated Plasma Spray (APS) process feasibility study: Plasma spray process development and evaluation

Abstract

An automated plasma spray (APS) process was developed to apply two layer (NiCrAlY and ZrO2-12Y2O3) thermal-barrier coatings to aircraft gas turbine engine blade airfoils. The APS process hardware consists of four subsystems: a mechanical blade positioner incorporating two interlaced six-degree-of-freedom assemblies; a noncoherent optical metrology subsystem; a microprocessor-based adaptive system controller; and commercial plasma spray equipment. Over fifty JT9D first stage turbine blades specimens were coated with the APS process in preliminary checkout and evaluation studies. The best of the preliminary specimens achieved an overall coating thickness uniformity of + or - 53 micrometers, much better than is achievable manually. Factors limiting this performance were identified and process modifications were initiated accordingly. Comparative evaluations of coating thickness uniformity for manually sprayed and APS coated specimens were initiated. One of the preliminary evaluation specimens was subjected to a torch test and metallographic evaluation.

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BibTeXRIS

Fetheroff, C. W., Derkacs, T., Matay, I. M.. 1979-05-01. Automated Plasma Spray (APS) process feasibility study: Plasma spray process development and evaluation. https://ntrs.nasa.gov/citations/19790021211

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