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- W4382584741 abstract "High pressure technology was employed to improve the corrosion properties of Mg-Y based alloys. The microstructures, corrosion rate and corrosion mechanisms were investigated. The results revealed the yttrium concentration in magnesium matrix was increased and the secondary dendrite arm spacing was reduced as the temperature of high pressure was increased. The corrosion performances in both simulated body fluid and Hank’s solution were evaluated by the immersion and electrochemical tests. Remarkably difference in the electrochemical impedance spectroscopy was encountered between as-cast and high pressure samples. Compared with the as-cast specimen with a simple inductive loop in high frequency region, the high pressure samples mostly consist of both a capacitive loop and an inductive loop. The improvement of corrosion properties was mainly associated with the continuous secondary dendrite boundaries and the accumulated oxide film on the surface. It was demonstrated that the high pressure solidification was an effective method to improve the corrosion properties of Mg based degradation implants." @default.
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- W4382584741 date "2012-01-01" @default.
- W4382584741 modified "2023-10-18" @default.
- W4382584741 title "High Pressure Solidification: An Effective Approach to Improve the Corrosion Properties of Mg-Y Based Implants" @default.
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- W4382584741 doi "https://doi.org/10.1016/s1452-3981(23)19645-3" @default.
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