The corrosion behavior of intermetallic compounds Ni3(Si,Ti) and Ni3(Si,Ti) + 2Mo in acidic solutions |
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Authors: | Gadang Priyotomo Kenji OkitsuAkihiro Iwase Yasuyuki KanenoRokuro Nishimura Takayuki Takasugi |
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Affiliation: | Department of Materials Science, College of Engineering, 1-1, Gakuen-cho, Sakai, Osaka Prefecture University, Osaka 599-8531, Japan |
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Abstract: | The corrosion behavior of the intermetallic compounds homogenized, Ni3(Si,Ti) (L12: single phase) and Ni3(Si,Ti) + 2Mo (L12 and (L12 + Niss) mixture region), has been investigated using an immersion test, electrochemical method and surface analytical method (SEM; scanning electron microscope and EPMA: electron probe microanalysis) in 0.5 kmol/m3 H2SO4 and 0.5 kmol/m3 HCl solutions at 303 K. In addition, the corrosion behavior of a solution annealed austenitic stainless steel type 304 was studied under the same experimental conditions as a reference. It was found that the intergranular attack was observed for Ni3(Si,Ti) at an initial stage of the immersion test, but not Ni3(Si,Ti) + 2Mo, while 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 showed the lowest corrosion resistance in both solutions and Ni3(Si,Ti) had the highest corrosion resistance in the HCl solution, but not in the H2SO4 solution. For instance, it was found that unlike type 304 stainless steel, these intermetallic compounds were difficult to form a stable passive film in the H2SO4 solution. The results obtained were explained in terms of boron segregation at grain boundaries, Mo enrichment and film stability (or strength). |
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Keywords: | Intermetallic compound Ni3(Si,Ti) Ni3(Si,Ti) + 2Mo Intergranular corrosion Preferential dissolution |
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