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      Simulating Pitting Corrosion in AM 316L Microstructures Through Phase Field Methods and Computational Modeling

      Journal of The Electrochemical Society
      The Electrochemical Society

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          Abstract

          This work investigates how the crystallographic features of additive manufactured (AM) microstructures impact the pitting corrosion process through computational simulations of phase field models. Crystallographic influence is explored by introducing orientation dependencies into the corrosion potentials and elastic constants of the model through microstructural data provided from AM 316L samples. Comparisons of evolved pit morphologies and stress responses are made to a standard homogeneous, semi-circular model to better highlight how the complexity of AM microstructures affects pit evolution and stress concentrations. The results illustrate that AM-informed modeling cases produce larger, deeper pits with numerous locations of elevated stress concentrations along the pit front.

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          Most cited references76

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          Pitting Corrosion of Metals

          G. Frankel (1998)
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            Is Open Access

            DREAM.3D: A Digital Representation Environment for the Analysis of Microstructure in 3D

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              Modelling of pitting corrosion in marine and offshore steel structures – A technical review

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                Author and article information

                Contributors
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                Journal
                Journal of The Electrochemical Society
                J. Electrochem. Soc.
                The Electrochemical Society
                0013-4651
                1945-7111
                January 18 2022
                January 01 2022
                January 18 2022
                January 01 2022
                : 169
                : 1
                : 011503
                Article
                10.1149/1945-7111/ac4935
                d5ee3620-6724-4729-82c5-7bc8be213c9e
                © 2022

                https://iopscience.iop.org/page/copyright

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