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Morphologies of Brazed NiO-YSZ/316 Stainless Steel Using B-Ni2 Brazing Filler Alloy in a Solid Oxide Fuel Cell System
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HOME > J Korean Powder Metall Inst > Volume 18(5); 2011 > Article
Morphologies of Brazed NiO-YSZ/316 Stainless Steel Using B-Ni2 Brazing Filler Alloy in a Solid Oxide Fuel Cell System
Sung-Kyu Lee, Kyoung-Hoon Kang, Hyun-Seon Hong, Sang-Kook Woo
Journal of Korean Powder Metallurgy Institute 2011;18(5):430-436
DOI: https://doi.org/10.4150/KPMI.2011.18.5.430
1Plant Engineering Center, Institute for Advanced Engineering
2Plant Engineering Center, Institute for Advanced Engineering
3Plant Engineering Center, Institute for Advanced Engineering
4Energy Materials Research Center, Korea Institute of Energy Research
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Joining of NiO-YSZ to 316 stainless steel was carried out with B-Ni2 brazing alloy (3 wt% Fe, 4.5 wt% Si, 3.2 wt% B, 7 wt% Cr, Ni-balance, m.p. 971-999°C) to seal the NiO-YSZ anode/316 stainless steel interconnect structure in a SOFC. In the present research, interfacial (chemical) reactions during brazing at the NiO-YSZ/316 stainless steel interconnect were enhanced by the two processing methods, a) addition of an electroless nickel plate to NiO-YSZ as a coating or b) deposition of titanium layer onto NiO-YSZ by magnetron plasma sputtering method, with process variables and procedures optimized during the pre-processing. Brazing was performed in a cold-wall vacuum furnace at 1080°C. Post-brazing interfacial morphologies between NiO-YSZ and 316 stainless steel were examined by SEM and EDS methods. The results indicate that B-Ni2 brazing filler alloy was fused fully during brazing and continuous interfacial layer formation depended on the method of pre-coating NiO-YSZ. The inter-diffusion of elements was promoted by titanium-deposition: the diffusion reaction thickness of the interfacial area was reduced to less than 5 µm compared to 100 µm for electroless nickel-deposited NiO-YSZ cermet.

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