A critical review of corrosion characteristics of additively manufactured stainless steels
Критический обзор характеристик коррозии нержавеющих сталей, полученных аддитивными методами
2020-12-17
SCID: 54.1/y2wpmxzq
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additive manufacturingadditively manufactured stainless steelscorrosion mechanismserosion-corrosionfatigue corrosionintergranular corrosionmicrostructural featurespitting corrosionstress corrosion crackingthermal histories
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Abstract (AI)
Additive manufacturing (AM) is associated with a sequence of rapid heating and cooling cycles along with large temperature gradients, developing complex thermal histories which have direct influence on resultant microstructures. Such a dynamic and far-from-equilibrium process leads to distinct microstructural features that are expected to cause changes in the corrosion characteristics of AM stainless steels. Currently such changes are not well understood, consequently inconsistencies and disagreements are frequently found in the literature on the corrosion behaviour of AM stainless steels. This paper performs a critical review of corrosion characteristics of AM stainless steels by assessing the effects of their unique microstructural features on corrosion behaviour, with particular focus on new corrosion phenomena and selected critical forms of localised corrosion including pitting corrosion, erosion-corrosion, intergranular corrosion, fatigue corrosion, and stress corrosion cracking. Discussion on the mechanisms of these corrosion phenomena and behaviour, as well as major influencing factors, are undertaken, leading to recommendations and suggestions for future development of AM stainless steels for various corrosive conditions.
Key Findings
1
Additive manufacturing creates complex thermal histories (rapid heating/cooling, large gradients) that produce distinct, far-from-equilibrium microstructures in stainless steels.
2
Mechanisms and major influencing factors for these localized corrosion behaviors are analyzed, enabling targeted recommendations for improving AM stainless steel performance in corrosive environments.
3
The paper highlights gaps in understanding and provides suggestions for future development of AM stainless steels for various corrosive conditions.
4
The review identifies new corrosion phenomena and focuses on critical localized corrosion forms in AM stainless steels: pitting, erosion-corrosion, intergranular corrosion, fatigue corrosion, and stress corrosion cracking.
5
These unique AM microstructural features are expected to alter corrosion characteristics of stainless steels, leading to inconsistent and conflicting reports in the literature.
Research Object
Additively manufactured stainless steels
Research Subject
Corrosion characteristics and mechanisms—including pitting, erosion-corrosion, intergranular corrosion, fatigue corrosion, and stress corrosion cracking—and the effects of AM-induced unique microstructural features and influencing factors on these corrosion behaviors
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2020-12-17
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