Anti-Corrosion Methods and Materials· 2026Q2
Effect of Y on solidification microstructure and corrosion resistance of high Mo super austenitic stainless steels
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- Q2SCImago
- 2026year
Short summary
Adding Yttrium (Y) to high Mo super austenitic stainless steels (SASSs) refines solidification microstructure, reduces elemental segregation, and significantly improves corrosion resistance in NaCl solution, with 50 ppm Y showing optimal results.
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Key points
- Yttrium addition refines the solidification microstructure and reduces elemental segregation in high Mo SASSs.
- Y decreases σ phase precipitation temperature and reduces Cr/Mo enrichment in interdendritic liquid.
- Increasing Y content significantly reduces σ phase volume fraction, size, and continuity.
- Optimal Y content (50 ppm) in 3.5 Wt.% NaCl solution reduces corrosion current density, increases polarization resistance, and minimizes pit depth.
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Abstract
Purpose This study investigates the effect of Y on the microstructure and corrosion resistance of high Mo super austenitic stainless steels. This study aims to provide experimental evidence for the development and application of high-Mo super austenitic stainless steel. Design/methodology/approach High Mo super austenitic stainless steels (SASSs) containing 0, 24, 50 and 93 ppm Y were prepared by vacuum nonconsumable arc melting. Thermodynamic calculations based on the Gulliver-Scheil models, combined with optical microscope, scanning electron microscope, equipped with energy-dispersive spectroscopy, electron backscatter diffraction, X-ray diffractometer, transmission electron microscopy, potentiodynamic polarization, electrochemical impedance spectroscopy and laser scanning confocal microscopy were used to systematically study the effect of Y on the solidification behavior, microstructure, σ phase precipitation and corrosion resistance of high Mo SASSs. Findings The addition of Y slightly decreased the s phase precipitation temperature and reduced the enrichment of Cr and Mo in the interdendritic residual liquid. Y significantly refined the solidification microstructure and reduced elemental segregation. The σ phase volume fraction, size and continuity decreased significantly with the increase of Y content. In a 3.5 Wt.% NaCl solution, the addition of an appropriate amount of Y reduced the corrosion current density, increased the polarization resistance and reduced pit depth. The test steel with a Y content of 50 ppm showed the best corrosion resistance. Originality/value This study provides insights into the effect and optimum addition content of Y in high Mo super austenitic stainless steels.
The authors' abstract, as published at the source. Anti-Corrosion Methods and Materials, 2026 · DOI ↗
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Field: Metals and Alloys
Metals and AlloysMaterials Science