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Kabupaten Nias Selatan

Badan Riset dan Inovasi Nasional

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07-11-2022

12-08-2024

ec178b3e-6995-44f9-94cf-22b11d66280c

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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...

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

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

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

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

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The Effect of Annealing Temperatures After Thermomechanical Process to The Corrosion Behavior of Ni3(Si, Ti) in Sulfate Solution

Terbatas

The corrosion behaviour of the intermetallic compounds Ni3(Si,Ti) (L12: single phase), has been investigated using an immersion test, polarization method, scanning electron microscope in 0.5 kmol/m3 H2SO4 solution at 303 K. Moreover, the corrosion behaviour of austenitic stainless steel type 304 was studied under the same experimental conditions as reference. It was found that the intergranular attack and uniform attack were observed on Ni3(Si,Ti) after thermomechanical and annealing processes (1173K and 1273K) respectively in the immersion test. From the immersion test and polarization curves, all annealed Ni3(Si,Ti) had less corrosion resistance compared to type 304. In addition, Ni3(Si,Ti) was difficult to form a stable passive film, but not for type 304. International Journal of Science and Engineering (IJSE), Vol. 8, No. 2. Hal. 141-145 ISSN 2086-5023

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