Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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Materials Map under construction

The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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Put, Aurélie Rouaix-Vande

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (5/5 displayed)

  • 2017Relevance of other parameters than carbon activity in defining the severity of a metal dusting environment6citations
  • 2017Chromium and iridium effects on the short-term interdiffusion behaviour between Pt rich γ-γ′ bond-coatings and a Ni-Al-Cr alloy9citations
  • 2014Cyclic Oxidation Behavior of TBC Systems with a Pt-Rich γ-Ni+γ′-Ni3Al Bond-Coating Made by SPS12citations
  • 2012Mechanistic-Based Lifetime Predictions for High-Temperature Alloys and Coatings23citations
  • 2012Inhibited aluminization of an ODS FeCr alloy6citations

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Doublet, Sébastien
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Monceau, Daniel
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Fabas, Aurélien
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Murakami, Hideyuki
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Audigié, Pauline
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Estournès, Claude
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Selezneff, Serge
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Hamadi, Sarah
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Dryepondt, Sébastien
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Zhang, Yichan
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Pint, Bruce A.
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Pint, B. A.
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Co-Authors (by relevance)

  • Doublet, Sébastien
  • Monceau, Daniel
  • Fabas, Aurélien
  • Murakami, Hideyuki
  • Audigié, Pauline
  • Estournès, Claude
  • Selezneff, Serge
  • Hamadi, Sarah
  • Dryepondt, Sébastien
  • Zhang, Yichan
  • Pint, Bruce A.
  • Pint, B. A.
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article

Chromium and iridium effects on the short-term interdiffusion behaviour between Pt rich γ-γ′ bond-coatings and a Ni-Al-Cr alloy

  • Monceau, Daniel
  • Put, Aurélie Rouaix-Vande
  • Murakami, Hideyuki
  • Audigié, Pauline
Abstract

The interdiffusion behaviour of a 5 μm thick layer of Pt deposited by electroplating on a γ-Ni-12Al-10Cr model alloy was studied in order to assess the effect of Cr. Heat treatments were performed for 1 min up to 1 h at 1100 °C under argon. Cr addition increased the uphill diffusion of Al to the surface when compared with Pt/γ-(Ni,Al) systems. Al and Cr had a positive chemical interaction in presence of Pt, as shown by the positive values of the DAlCrNi and DCrAlNi diffusion coefficients determined by modelling. Pt had a negative chemical interaction with Al and with Cr in such a way that Pt decreased their activities. According to the diffusion coefficient values, Pt had a greater influence on the Al activity than on the Cr one. Similarly, 2 μm of Pt and 3 μm of Pt-25Ir were deposited by electroplating on the same model alloy to investigate the effect of Ir. Heat treatments were performed in the same conditions as for Cr. Iridium slowed down the interdiffusion when compared with systems with Pt only. Iridium diffused slower toward the substrate than Pt and a lower Pt + Ir flux toward the substrate was found. As voids formed at the interdiffusion zone/substrate interface due to Kirkendall effect, this lower inward Pt + Ir flux resulted in a lower outward vacancy flux and then Ir reduced Kirkendall voids formation. Moreover, Ir decreased the Pt effect on Al activity by dilution or even gave an opposite contribution to the Pt one. This reduced the uphill diffusion of Al, delaying the α-NiPtAl phase formation. Diffusion paths of each model system were also identified after 15 min at 1100 °C and all highlighted the α-NiPtAl phase formation and its aptitude to be used in TBC systems.

Topics
  • surface
  • chromium
  • phase
  • void
  • interdiffusion
  • vacancy
  • Iridium