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Insight into the anisotropic electrochemical corrosion behaviors of laser metal deposited Ni-based single crystal superalloy

CORROSION SCIENCE(2023)

Cited 6|Views3
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Abstract
Aiming to marine environment for Ni-based single crystal superalloy, whether anisotropy affects the electro-chemical corrosion behavior of laser metal deposited component is unclear. This work reveals that the corrosion resistances increase in the order of (001) < (111) < (011), agrees well with the sequence of film thickness. The passive films are mainly composed of W6+, Ta5+, Al3+, and Mo6+ oxides. The optimal performance of (011) surface is attributed to the thickest film and the highest fractions of W6+ and Al3+ oxides. Our results pave the way for the orientation design of laser repaired superalloys to acquire optimal corrosion properties.
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Key words
Ni-based single crystal superalloys,Laser metal deposition,Electrochemical corrosion,Passive film,Crystal orientation
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