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Corrosion mechanism investigation of TiN/Ti coating and TC4 alloy for aircraft compressor application
Institution:1. School of Material Science and Engineering, Chang’an University, Xi’an 710064, China;2. Engineering Research Center of Transportation Materials of Ministry of Education, Chang’an University, Xi’an 710061, China;3. Science and Technology on Plasma Dynamics Laboratory, Air Force Engineering University, Xi’an 710038, China
Abstract:It is imperative to develop multifunctional erosion and corrosion resistant coatings for compressor blades of aircraft engines in harsh environment. PVD (Physical Vapor Deposition) technology has the advances in processing erosion-resistant coatings; however, the performance of PVD coatings to combat corrosion depends on various coating defects. Determining and comparing the corrosion performances of PVD TiN/Ti coating and uncoated TC4 alloy was the main objective of present work. The 960 h salt spray corrosion and 116 h hot corrosion tests were conducted to simulate the grounding and working environments of the aircraft compressors. The corrosion mechanisms due to the coating defects such as pinhole, columnar boundary and large grain were analyzed based on the OM, Confocal microscope, electrochemical measurements, SEM, XRD and EDS results. Owing to the disordered state associated with the columnar boundary and the coating defect, nitrogen could be easily replaced by oxygen in the hot corrosion process, these structures were channels for fast diffusion of oxygen. Moreover, the Gibbs energy changes of Ti oxidation and TiN oxidation were thermodynamically calculated according to the working condition of aircraft compressors, and considerable research effort was focused on mapping out the phase diagram of Ti, TiN and high pressure gases. The findings of this research can provide insights into developing multifunctional coatings for future aircraft engines.
Keywords:Coating defects  Hot corrosion  Microstructure  Salt spray corrosion  TiN/Ti coating
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