Decreased Metal Dusting Resistance of Ni-Cu Alloys by Fe and Mn Additions

Author:

Ulrich Anke S.1,Kasatikov Sergey2,König Till3,Fantin Andrea4,Margraf Johannes T.1,Galetz Mathias C.3

Affiliation:

1. University of Bayreuth

2. Helmholtz-Zentrum Berlin für Materialien und Energie GmbH

3. DECHEMA-Forschungsinstitut

4. Bundesanstalt für Materialforschung und -prüfung

Abstract

Abstract

Ni-Cu alloys are promising for application at temperatures between 400–900°C and reducing atmospheres with high C-contents. Typically, under such conditions, metallic materials in contact with the C-rich atmosphere are degraded by a mechanism called MD. Ni-Cu-alloys do not form protective oxide scales, but their resistance is attributed to Cu, which catalytically inhibits the C-deposition on the surface. Adding other alloying elements, such as Mn or Fe, was found to enhance the MD attack of Ni-Cu alloys again. In this study, the effect of the Mn and Fe is divided into two affected areas: the surface and the bulk. The MD attack on binary Ni-Cu alloys, model alloys with Fe and Mn additions, and commercial Monel Alloy 400 is experimentally demonstrated. The surface electronic structure causing the adsorption and dissociation of C-containing molecules is investigated for model alloys. Analytical methods such as scanning electron microscopy combined with energy-dispersive X-ray spectroscopy, electron probe microanalysis combined with wavelength-dispersive X-ray spectroscopy, X-ray diffraction analysis, and near-edge X-ray absorption fine structure measurements were used. The results are correlated to CALPHAD calculations and atomistic simulations combining density functional theory calculations and machine learning. It is found that the Cu content plays a significant role in the surface reaction. The effect of Mn and Fe is mainly attributed to oxide formation. A mechanism explaining the enhanced attack by adding both Fe and Mn is proposed.

Publisher

Springer Science and Business Media LLC

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