Corrosion Resistance of the Welded Joints From the Ultrafine-Grained Near-α Titanium Alloys Ti-5Al-2V Obtained by Spark Plasma Sintering
Коррозионная стойкость сварных соединений ультрамелкозернистого около-α-титанового сплава Ti-5Al-2V, полученных методом искрового плазменного спекания
2023-01-27
SCID: 54.1/se54ws78
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corrosion resistancediffusion weldingintercrystalline corrosionspark plasma sinteringultrafine-grained titanium alloys
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Abstract (AI)
A diffusion welding of coarse-grained and ultrafine-grained (UFG) specimens of titanium near-α alloy Ti-5Al-2V used in nuclear power engineering was made by Spark Plasma Sintering. The failure of the welded specimens in the conditions of hot salt corrosion and of electrochemical corrosion were shown to have preferentially intercrystalline character. In the case of presence of macrodefects, crevice corrosion of the welded joints was observed. The resistance of the alloys against the intercrystalline corrosion was found to be determined by the concentration of vanadium at the titanium grain boundaries, by the size and volume fraction of the β-phase particles and by the presence of micro- and macropores in the welded joints. The specimens of the welded joints of the UFG alloy have higher hardness, hot salt corrosion resistance and the electrochemical corrosion.
Key Findings
1
Intercrystalline corrosion resistance depended on grain-boundary vanadium concentration, β-phase particle size and volume fraction, and micro- and macroporosity.
2
Macrodefects in welded joints promoted crevice corrosion.
3
Spark Plasma Sintering was used to diffusion-weld coarse-grained and ultrafine-grained Ti-5Al-2V near-α titanium alloy specimens.
4
Ultrafine-grained welded joints exhibited higher hardness and greater resistance to hot salt and electrochemical corrosion than coarse-grained joints.
5
Welded-joint failure under hot salt and electrochemical corrosion occurred predominantly through intercrystalline corrosion.
Research Object
Welded joints of coarse-grained and ultrafine-grained near-α Ti-5Al-2V titanium alloy produced by spark plasma sintering
Research Subject
Corrosion resistance and intercrystalline corrosion behavior, including the effects of vanadium segregation, β-phase particles, and pores or macrodefects
Publication Details
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2023-01-27
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