Corrosion fatigue behavior of electron beam melted iron in simulated body fluid

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Wackenrohr, S.; Torrent, C.J.J.; Herbst, S.; Nürnberger, F.; Krooss, P. et al.: Corrosion fatigue behavior of electron beam melted iron in simulated body fluid. In: npj Materials degradation 6 (2022), 18. DOI: https://doi.org/10.1038/s41529-022-00226-4

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Abstract: 
Pure iron is very attractive as a biodegradable implant material due to its high biocompatibility. In combination with additive manufacturing, which facilitates great flexibility of the implant design, it is possible to selectively adjust the microstructure of the material in the process, thereby control the corrosion and fatigue behavior. In the present study, conventional hot-rolled (HR) pure iron is compared to pure iron manufactured by electron beam melting (EBM). The microstructure, the corrosion behavior and the fatigue properties were studied comprehensively. The investigated sample conditions showed significant differences in the microstructures that led to changes in corrosion and fatigue properties. The EBM iron showed significantly lower fatigue strength compared to the HR iron. These different fatigue responses were observed under purely mechanical loading as well as with superimposed corrosion influence and are summarized in a model that describes the underlying failure mechanisms.
License of this version: CC BY 4.0 Unported
Document Type: Article
Publishing status: publishedVersion
Issue Date: 2022
Appears in Collections:Fakultät für Maschinenbau

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1 image of flag of Germany Germany 28 56.00%
2 image of flag of United States United States 12 24.00%
3 image of flag of China China 4 8.00%
4 image of flag of Taiwan Taiwan 1 2.00%
5 image of flag of India India 1 2.00%
6 image of flag of Indonesia Indonesia 1 2.00%
7 image of flag of United Kingdom United Kingdom 1 2.00%
8 image of flag of Denmark Denmark 1 2.00%
9 image of flag of Belgium Belgium 1 2.00%

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