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07-11-2022

12-08-2024

0b624ec2-eb77-47a9-b58d-c7e6914ba3bf

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Corrosion Behavior of Ni3(Si,Ti) in Hydrochloric Acid Solution

The corrosion behaviour of the intermetallic compounds Ni3(Si,Ti) (L12: single p...

The Environment-Induced Cracking of As-Cold Rolled Ni3(Si,Ti) and Ni3(Si,Ti) wit...

The environment-induced cracking (EIC) of as cold-rolled Ni3(Si,Ti) and Ni3(Si,T...

The Environment-Induced Cracking of as-Annealed Ni3(Si, Ti) and Ni3(Si, Ti) with...

The environment-induced cracking (EIC) of as-annealed Ni3(Si,Ti) and Ni3(Si,Ti) ...

The Effect of Annealing Temperatures After Thermomechanical Process to The Corro...

The corrosion behaviour of the intermetallic compounds Ni3(Si,Ti) (L12: single p...

Pitting Corrosion of Ni3(Si,Ti)+2Cr Intermetallic Compound at Various Chloride C...

The pitting corrosion of Ni3(Si,Ti) with 2 at persen Cr containing two regions o...

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Corrosion Behavior of Ni3(Si,Ti) + 2Mo in Hydrochloric Acid Solution

Terbatas

The corrosion behavior of Ni3(Si,Ti) + 2Mo intermetallic compound (L12 and (L12 + Niss) mixture region) has been investigated using an immersion test, polarization method and surface analytical method (scanning electron microscope and energy-dispersive X-Ray spectrometry) in 0.5 kmol/m3 hydrochloric acid (HCl) solution at 303 K. In addition, the results obtained were compared to those of the L12 single-phase Ni3(Si,Ti) intermetallic compound and C 276 alloy. It was found that Ni3(Si,Ti) + 2Mo had the preferential dissolution of L12 with a lower Mo concentration compared to (L12 + Niss) mixture region. From the immersion test and polarization curves, Ni3(Si,Ti) + 2Mo and C276 showed the lowest corrosion resistance and the highest corrosion resistance in the solution, respectively. From this work, It implied that unlike C276, Ni3(Si,Ti) +2Mo intermetallic compound was difficult to form a stable passive film in HCl solution as well as Ni3(Si,Ti) in the same solution. Internat. J. Sci. Eng., Vol. 6(1)2014:39-42

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