## Abstract This research work was carried out to find the optimum conditions for anodic sampling of steels, aluminium alloys, brass etc. It was found using electrolyte: the water solution of ammonβnitrat (1 g/l) and hydrochloric acid (conc.) in volume ratio 1:1, give the best results if the durati
Anodic behavior of Fe40Ni40B20 and Fe39Ni39B10Si12 amorphous alloys
β Scribed by M. Janik-Czachor
- Publisher
- John Wiley and Sons
- Year
- 1983
- Tongue
- German
- Weight
- 409 KB
- Volume
- 34
- Category
- Article
- ISSN
- 0947-5117
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β¦ Synopsis
Amorphous alloys Fe40Ni40B2,, and Fe3yNi3yB,0Si12 exhibit a typical active/passive transition when anodically polarized in borate and/or phthalate buffer solutions, at pH = 4.0; 5.3; 6.3 and 8.4. There is no large effect of Si on the anodic behaviour of the alloys in these media.
Both alloys undergo a typical pitting corrosion in chloride containing solutions, but, the Si bearing alloy is more resistant to the breakdown of passivity. AES analysis revealed a large enrichment in Si within the passivating film formed on the Si bearing alloy, which most probably accounts for its enhanced stability.
Amorphe Legierungen wie Fe40Ni40B20 und Fe,yNi3yB,oSi,, zeigen bei anodischer Polarisation in Borat-und/oder Phthalat-Pufferlosungen bei pH 4,O; 5,3; 6,3 und 8,4 einen typischen AktidPassiv-Ubergang. Das anodische Verhalten der Legierungen in diesen Medien wird durch Silicium nicht wesentlich beeinfluat. Beide Legierungen erleiden in chloridhaltigen Losungen Lochkorrosion, doch die Si-haltige Legierung ist gegen die Zerstorung der Passivitat widerstandfahiger . Aufgrund von AES-Untersuchungen ist in der Passivierungsschicht auf der Si-haltigen Legierung das Silicium stark angereichert; dieser Umstand durfte fur die verbesserte Bestandigkeit ausschlaggebend sein.
* Contents of the alloying elements are given in atomic percent.
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