2011
DOI: 10.4028/www.scientific.net/ddf.312-315.888
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Suppression of Iron Silicide Formation in the Reaction Layer of Sialon – 7.5% Cr Ferritic Steel Joint

Abstract: Diffusion bonding of sialon and 7.5%-Cr Ferritic Steel (FS) in as-received and nitrided condition was studied. Decomposition of sialon and interdiffusion of elements between the sialon and the steel were observed. The interdiffusion of elements produced reaction layers at the joint. The steel moved into the decomposition part of the sialon and replaced the decomposed sialon in this part. Diffusion of silicon into the steel resulted in the silicon-diffusion layer. FeSi2 was formed in the reaction layer when Si … Show more

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“…They found an increase in the bonded material's width due to the temperature rise accompanied by bond strength decrease. However, ferritic joining to stainless steel was quite successful in forming the intermediate layer that absorbed the residual layer raised at the interface [16,17]. The diffusion joining of stainless steels and SiAlONs has excellent potential to be utilized for engineering applications.…”
Section: Figure 1 Schematics Of Joining In Brazing and Diffusion Bonding [13]mentioning
confidence: 99%
“…They found an increase in the bonded material's width due to the temperature rise accompanied by bond strength decrease. However, ferritic joining to stainless steel was quite successful in forming the intermediate layer that absorbed the residual layer raised at the interface [16,17]. The diffusion joining of stainless steels and SiAlONs has excellent potential to be utilized for engineering applications.…”
Section: Figure 1 Schematics Of Joining In Brazing and Diffusion Bonding [13]mentioning
confidence: 99%