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- W4233683742 abstract "Different plasma assisted methods can be used to nitriding, carburizing, carbonitriding or to produce a coating over stainless steels. In order to preserve their excellent corrosion resistance is important to control these processes parameters, avoiding the chromium depletion of the steel matrix, produced mainly due to longer process time and/or higher temperatures. This work has the aim to analyze the corrosion morphology and behavior under certain test conditions using different characterization methods. For assessing the corrosion resistance, cyclic potentiodynamic anodic tests have been done. A three electrodes cell has been used, where the counter electrode is a platinum wire, the reference electrode is a saturated calomel electrode and the treated surface sample is the working electrode. When the current density reach an arbitrary value of 200 mA/cm2, the potential is registered as E 200 , and the potential is swept in reverse direction. This E 200 value is used as a parameter of comparison, obtaining the highest values for those samples with the thickest modified layers. The morphology observed for the nitrided and carburized AISI 316L samples, consists in pits located below the modified layer, and originated in some non‐metallic inclusions present in the “as received” alloy. SEM/FIB microscopy was used to identify and characterize this behavior. At present, there are some points of interest under research. The interphase between the modified layer and the steel seems to be a preferable site for pits to nucleate and grow. Atomic probe microscopy, TEM as well as EBSD were used to identify possible chemical and structural singularities in that place. The connection between the interphase and the electrolyte is produced by channels originated in the inclusions, but not all of them nucleate the attack. Different kind of inclusions have been observed and identified using TEM and EBSD." @default.
- W4233683742 created "2022-05-12" @default.
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- W4233683742 date "2016-12-20" @default.
- W4233683742 modified "2023-10-14" @default.
- W4233683742 title "Multi-technique approach to study the corrosion of plasma assisted surface treatments of 316L stainless steel" @default.
- W4233683742 doi "https://doi.org/10.1002/9783527808465.emc2016.7068" @default.
- W4233683742 hasPublicationYear "2016" @default.
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