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Investigations of the Deuterium Permeability of As-Deposited and Oxidized TiAlN Coatings. | LitMetric

Investigations of the Deuterium Permeability of As-Deposited and Oxidized TiAlN Coatings.

Materials (Basel)

Department of Tribology, Fraunhofer-Institut für Werkstoffmechanik IWM, Woehlerstrasse 11, 79108 Freiburg, Germany.

Published: May 2020

Aluminum containing MAX (MAX) phase materials have attracted increasing attention due to their corrosion resistance, a pronounced self-healing effect and promising diffusion barrier properties for hydrogen. We synthesized TiAlN coatings on ferritic steel substrates by physical vapor deposition of alternating Ti- and AlN-layers followed by thermal annealing. The microstructure developed a {0001}-texture with platelet-like shaped grains. To investigate the oxidation behavior, the samples were exposed to a temperature of 700 °C in a muffle furnace. Raman spectroscopy and X-ray photoelectron spectroscopy (XPS) depth profiles revealed the formation of oxide scales, which consisted mainly of dense and stable α-AlO. The oxide layer thickness increased with a time dependency of ~t. Electron probe micro analysis (EPMA) scans revealed a diffusion of Al from the coating into the substrate. Steel membranes with as-deposited TiAlN and partially oxidized TiAlN coatings were used for permeation tests. The permeation of deuterium from the gas phase was measured in an ultra-high vacuum (UHV) permeation cell by mass spectrometry at temperatures of 30-400 °C. We obtained a permeation reduction factor (PRF) of 45 for a pure TiAlN coating and a PRF of ~3700 for the oxidized sample. Thus, protective coatings, which prevent hydrogen-induced corrosion, can be achieved by the proper design of TiAlN coatings with suitable oxide scale thicknesses.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7254320PMC
http://dx.doi.org/10.3390/ma13092085DOI Listing

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