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Insights into Plastic Localization by Crystallographic Slip from Emerging Experimental and Numerical Approaches AITranslate

university of illinois urbana-champaign; university of illinois urbana-champaign; university of illinois urbana-champaign; psl university; university of lyon i; us naval research laboratory; shanghai jiao tong university; university california; university california; university california
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Publisher: Elsevier
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Abstract AITranslate

Advanced experimental and numerical approaches are being developed to capture the localization of plasticity at the nanometer scale as a function of the multiscale and heterogeneous microstructure present in metallic materials. These innovative approaches promise new avenues to understand microstructural effects on mechanical properties, accelerate alloy design, and enable more accurate mechanical property prediction. This article provides an overview of emerging approaches with a focus on the localization of plasticity by crystallographic slip. New insights into the mechanisms and mechanics of strain localization are addressed. The consequences of the localization of plasticity by deformation slip for mechanical properties of metallic materials are also detailed.

KeyWords AITranslate

slip localization metallic materials experimental and numerical techniques mechanical properties plasticity
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DOI:https://doi.org/10.1146/annurev-matsci-080921-102621

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Citation Information:

Advanced experimental and numerical approaches are being developed to capture the localization of plasticity at the nanometer scale as a function of the multiscale and heterogeneous microstructure present in metallic materials. These innovative approaches promise new avenues to understand microstructural effects on mechanical properties, accelerate alloy design, and enable more accurate mechanical property prediction. This article provides an overview of emerging approaches with a focus on the localization of plasticity by crystallographic slip. New insights into the mechanisms and mechanics of strain localization are addressed. The consequences of the localization of plasticity by deformation slip for mechanical properties of metallic materials are also detailed.

quote

GB/T 7714-2015 [1] J.C. Stinville, M.A. Charpagne, R. Maaß, et al. Annual Review of Materials Research, 2023(53). DOI:10.1146/annurev-matsci-080921-102621.
MLA [1] J.C. Stinville, et al., Annual Review of Materials Research, no. 53, 2023, https://doi.org/10.1146/annurev-matsci-080921-102621.
APA [1] J.C. Stinville, M.A. Charpagne, R. Maaß, H. Proudhon, W. Ludwig, P.G. Callahan, F. Wang, I.J. Beyerlein, M.P. Echlin, & T.M. Pollock. (2023). Annual Review of Materials Research(53). https://doi.org/10.1146/annurev-matsci-080921-102621
IEEE [1] J.C. Stinville, M.A. Charpagne, R. Maaß, H. Proudhon, W. Ludwig, P.G. Callahan, F. Wang, I.J. Beyerlein, M.P. Echlin, and T.M. Pollock, Annual Review of Materials Research, no. 53, 2023, doi: 10.1146/annurev-matsci-080921-102621. keywords: {slip localization;metallic materials;experimental and numerical techniques;mechanical properties;plasticity}