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- W4207022440 abstract "This work investigates the influence of TiCN nanoparticles addition on corrosion behavior of AZ91 alloys solidified at various cooling rates in 0.1 M NaCl solution. Results show that AZ91–2 (vol%) TiCN nanocomposite produced at 5 K/s exhibit highest corrosion resistance while its corrosion performance is dramatically decreased and even worse than that of matrix alloy when cooled at 60 K/s. Unlike intragranular distribution of NPs revealed in AZ91 nanocomposite produced at 60 K/s, intergranular distributed NPs revealed in 5 K/s can act as corrosion barrier between β-Mg 17 Al 12 and α-Mg and significantly reduce their potential difference, thus effectively inhibiting the corrosion. • AZ91-2(vol%)TiCN nanocomposite produced at the cooling rate of 5 K/s exhibits highest corrosion resistance among all alloys. • Increased cooling rates would degrade corrosion performance of AZ91-2(vol%)TiCN nanocomposites. • AZ91-2(vol%)TiCN nanocomposite solidified at the cooling rate of 60 K/s reveal a worse corrosion than matrix alloy. • The cooling rates of 5 and 60 K/s lead to different NP distribution types, i.e. intergranular and intragranular. • Intergranular distributed NPs can act as corrosion barrier and reduce volta potential between α-Mg and β-Mg 17 Al 12 ." @default.
- W4207022440 created "2022-01-26" @default.
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- W4207022440 date "2022-04-01" @default.
- W4207022440 modified "2023-10-16" @default.
- W4207022440 title "TiCN nanoparticle-induced corrosion inhibition mechanisms of AZ91 alloy" @default.
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- W4207022440 doi "https://doi.org/10.1016/j.corsci.2022.110109" @default.
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