Microstructural characterization of ZrB۲–SiC–Si–MoSi۲–WC coatings applied by SPS on graphite substrate

Publish Year: 1402
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_SYNSINT-3-2_006

تاریخ نمایه سازی: 27 بهمن 1402

Abstract:

The aim of this research was to apply a protective composite coating made of ultra-high temperature ceramics (UHTCs) on the graphite substrates. The spark plasma sintering (SPS) method was used to apply this coating on the graphite substrate. First, efforts were made to choose the right chemical composition for the composite material of the coating and the sintering conditions (temperature, pressure, and holding time) for applying the coating. Then, single-layer coatings with the basic composition of ZrB۲–SiC–Si with WC and MoSi۲ additives in equal amounts of ۱.۲۵ and ۳.۷۵ vol% of each were successfully applied on the graphite substrates under sintering conditions of ۱۸۷۵±۲۵ °C final temperature, ۱۰ MPa initial pressure, ۲۵ MPa final pressure and ۵ min holding time. The presence of the Si element in the basic composition of these coatings, in addition to helping to form an intermediate diffusion layer at the interface between the composite coating and the graphite substrate, caused the strengthening of the joining despite the difference in the coefficient of thermal expansion between the graphite and the composite coating.The aim of this research was to apply a protective composite coating made of ultra-high temperature ceramics (UHTCs) on the graphite substrates. The spark plasma sintering (SPS) method was used to apply this coating on the graphite substrate. First, efforts were made to choose the right chemical composition for the composite material of the coating and the sintering conditions (temperature, pressure, and holding time) for applying the coating. Then, single-layer coatings with the basic composition of ZrB۲–SiC–Si with WC and MoSi۲ additives in equal amounts of ۱.۲۵ and ۳.۷۵ vol% of each were successfully applied on the graphite substrates under sintering conditions of ۱۸۷۵±۲۵ °C final temperature, ۱۰ MPa initial pressure, ۲۵ MPa final pressure and ۵ min holding time. The presence of the Si element in the basic composition of these coatings, in addition to helping to form an intermediate diffusion layer at the interface between the composite coating and the graphite substrate, caused the strengthening of the joining despite the difference in the coefficient of thermal expansion between the graphite and the composite coating.