Microstructure and corrosion behavior of Al(95-x) Ni (x) Y(5) (x = 7,10) glassy ribbons

Al(95-x)Ni(x)Y(5)(x=7,10)非晶带材的微观结构和腐蚀行为

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Abstract

In this work, we correlate the microstructure and passivation of the Al(95-x) Ni (x) Y(5) lightweight glassy ribbons (x = 7 and 10) using various techniques. The overdosed Ni (x = 10) can increase the melt viscosity and then deteriorate its glass-forming ability (GFA), ribbon formability, and Y-depleted extra layer formation. Consequently, the overdosed Ni weakens the passivation stability and corrosion resistance of the as-spun ribbon. The key role of the overdosed Ni can form a strong network and crystalline grain boundary in the amorphous matrix, which can transport Y and O to participate in the oxidation. These results can help us explore a valuable method for designing new Al-based metallic glasses.

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