Constarium
← Search

Structure · dataset · 2018

Shear Behavior of Fe/Fe3O4 interfaces

Listed in DataCite

Description

Abstract

The mechanical stability of oxides formed on metallic alloys is a key concern in the determination of component susceptibility to the medium in contact and the applicability of the alloy to high temperatures and other extreme conditions. In this context, the energy of adhesion is a key parameter. Density functional Theory (DFT) and other atomistic methods are fundamental tools in the determination of this quantity for Metal/Oxide interfaces.

Read the rest (4 more)

In this paper Fe(BCC) / Magnetite interface is assessed within the DFT approach. This system is of general interest, given that magnetite (Fe3O4) is the oxide in direct contact with the metal under generalized corrosion and for a wide range of conditions. Moreover, it has been demonstrated that passive films on iron alloys exhibit similar structural properties.

Magnetite is an inverse spinel with Fd3m structure, while Iron has a BCC crystal structure. The interface Fe3O4[001]-Fe[001] is modeled. The orientation relationship experimentally observed for this interface is Fe3O4[100]||Fe[110].

In the (001) direction, atomic layers with compositions FeO2 and Fe are alternated. Here only the Fe termination is treated, as it has been proved that it constitutes the most stable interface [1,2]. DFT is used to calculate the work needed to relatively slide the oxide and metal surfaces in reference to the principal directions of the interface.

Hence, it is possible to calculate the interface potential according to the model by WEI and HUTCHINSON [3]. This potential can be used for construction of meso scale models of the interface for a complete study of its properties.

Links

Topics

Inferred from text
Density functional theory 75%

Related

Provenance · 1 source records, 11 field assertions
SourceKeyLast seenRaw
DataCite10.6084/m9.figshare.6857333.v112 d agoJSON v1
FieldAssertionExtractorEvidence
access_levelsource · DataCiteconnector:datacite@1.0.0/data/attributes/rightsList
byte_sizesource · DataCiteconnector:datacite@1.0.0
concepts[field].fos:civil-engineeringsource · DataCiteconnector:datacite@1.0.0
concepts[field].fos:materials-engineeringsource · DataCiteconnector:datacite@1.0.0
concepts[method].local:method:dftenrichment · DataCitekeyword-concept-rules@1.0.0title+description (75%)
created_datesource · DataCiteconnector:datacite@1.0.0
descriptionsource · DataCiteconnector:datacite@1.0.0/data/attributes/descriptions
licensesource · DataCiteconnector:datacite@1.0.0/data/attributes/rightsList
publication_datesource · DataCiteconnector:datacite@1.0.0/data/attributes/dates
titlesource · DataCiteconnector:datacite@1.0.0/data/attributes/titles/0/title
updated_datesource · DataCiteconnector:datacite@1.0.0