Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/28460
Title: Modeling Corrosion Product Film Formation and Hydrogen Diffusion at the Crack Tip of Austenitic Stainless Steel
Authors: Yang, F
Zhang, J
Zhang, Y
Keywords: corrosion product films;hydrogen;diffusion;austenitic stainless steel
Issue Date: 24-Aug-2023
Publisher: MDPI
Citation: Yang, F., Zhang,J. and Zhang, Y. (2023) 'Modeling Corrosion Product Film Formation and Hydrogen Diffusion at the Crack Tip of Austenitic Stainless Steel', Materials, 16 (17), 5799, pp. 1 - 21. doi: 10.3390/ma16175799.
Abstract: Corrosion product films (CPFs) have significant effects on hydrogen permeation and the corrosion process at the crack tip. This paper established a two-dimensional calculation model to simulate the formation of CPFs at the crack tip and its effects on the crack tip stress status and hydrogen diffusion. The CPFs were simplified as a single-layer structure composed of Fe2O3, the effective CPFs boundary was modeled by the diffusion of oxygen, and the CPF-induced stress was modeled by hygroscopic expansion. The simulation was conducted with two stages; the first stage was to simulate the formation of CPFs formation and its effects on the crack tip stress status, while the second stage focused on the hydrogen diffusion with and without CPF formation under different external tensile loads. The results indicate that the highest compressive stress induced by the formation of CPFs is located at 50~60° of the crack contour and dramatically weakens the crack tip tensile stress at low-stress status. The CPFs can inhibit the hydrogen permeation into the crack tip, and the hydrostatic pressure effects on the redistribution of the permeated hydrogen are significant under larger external load conditions.
Description: Data Availability Statement: The data used to support the findings of this study were calculated according to the finite element method, and they are included in the article. The parameters used in the calculation model were cited from the references listed.
URI: https://bura.brunel.ac.uk/handle/2438/28460
DOI: https://doi.org/10.3390/ma16175799
Other Identifiers: ORCiD: Fuqiang Yang https://orcid.org/0000-0002-9971-1675
ORCiD: Jianzhou Zhang https://orcid.org/0000-0001-9868-900X
5799
Appears in Collections:Dept of Mechanical and Aerospace Engineering Research Papers

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