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Badan Riset dan Inovasi Nasional

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07-11-2022

12-08-2024

82bac261-adcd-47b2-af7a-8a25e3de116d

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Pitting Corrosion of Ni3(Si, Ti) Intermetallic Compound at Various Chloride Conc...

The pitting corrosion of Ni3(Si,Ti) intermetallic compound was investigated as f...

The influences of applied stress, test temperature, and concentration on environ...

The environment-induced cracking (EIC) behavior of Ni3 (Si,Ti) intermetallic com...

The Influences of Applied Stress, Test Temperature, and Concentration on Environ...

The environment-induced cracking (EIC) behavior of Ni3(Si,Ti) intermetallic comp...

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

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

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

The corrosion behavior of Ni3(Si,Ti) + 2Mo intermetallic compound (L12 and (L12 ...

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

Terbatas

The pitting corrosion of Ni3(Si,Ti) with 2 at persen Cr containing two regions of a Ni3(Si,Ti) single-phase of L12 structure and a mixture phase of of (L12 +Niss) was investigated as function of chloride concentrations by using a polarization method, scanning electron microscope and energy dispersive X-Ray spectroscopy in neutral sodium chloride solutions at 293 K. The pitting corrosion of Ni3(Si,Ti) with and without the addition of aluminium and type C276 alloy were also studied under the same experimental condition for the comparison. The pitting potential obtained for the Ni3(Si,Ti) with 2 at persen Cr decreased with increasing chloride concentration. The specific pitting potentials and the pitting potentials were decreased in the order of C276 alloy > Ni3(Si,Ti) > Ni3(Si,Ti) + 2Cr > Ni3(Si,Ti) + 4Al, which means that the pitting corrosion resistance of Ni3(Si,Ti) with 2 at persen Cr was higher than Ni3(Si,Ti) with 4 at persen Al, but lower than that of Ni3(Si,Ti). A critical chloride concentration of Ni3(Si,Ti) with 2 at persen Cr was found to be higher than that of Ni3(Si,Ti) with at persen Al. In addition, the presence of high concentration for oxygen indicates the occurrence of pit formation. International Journal of Science and Engineering, Vol. 7(1)2014:10-15

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