2009•Surface EngineeringRequires access

SiC/Cr–Al–Si/glass multilayer oxidation resistant coating for carbon/carbon composites

M Huang, Li Kz, Li Hj, Q-G Fu, Y Wang

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Abstract

Multilayer oxidation resistant SiC/Cr–Al–Si/glass coating for C/C composites was prepared by a three step method of pack cementation, plasma spraying and slurry dipping. The phase composition, microstructure and oxidation resistance of multilayer SiC/Cr–Al–Si/glass coating were studied by XRD, SEM and isothermal oxidation test at 1773 K in air respectively. Double layer SiC/Cr–Al–Si coating consisting of Al3·21Cr0·47, Cr3Si and Al2O3 can protect C/C composites from oxidation for only 61 h due to its high porosity. When a layer of borosilicate glass doped with MoSi2 was coated on the surface of the as sprayed Cr–Al–Si coating, multilayers of SiC/Cr–Al–Si/glass coating were formed such that they can protect C/C composites from oxidation for 95 h with only 5·3% weight loss and the corresponding weight loss rate is only 0·92×10−4 g cm−2 h−1. The positive effect of the borosilicate glass coating on the oxidation resistance of the coating may be attributed to its own fluidity at high temperature.

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What this paper is about

Multilayer oxidation resistant SiC/Cr–Al–Si/glass coating for C/C composites was prepared by a three step method of pack cementation, plasma spraying and slurry dipping. The phase composition, microstructure and oxidation resistance of multilayer SiC/Cr–Al–Si/glass coating were studied by XRD, SEM and isothermal oxidation test at 1773 K in air respectively. Double layer SiC/Cr–Al–Si coating consisting of Al3·21Cr0·47, Cr3Si and Al2O3 can protect C/C composites from oxidation for only 61 h due to its high porosity. When a layer of borosilicate glass doped with MoSi2 was coated on the surface of the as sprayed Cr–Al–Si coating, multilayers of SiC/Cr–Al–Si/glass coating were formed such that they can protect C/C composites from oxidation for 95 h with only 5·3% weight loss and the corresponding weight loss rate is only 0·92×10−4 g cm−2 h−1. The positive effect of the borosilicate glass coating on the oxidation resistance of the coating may be attributed to its own fluidity at high temperature.

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Available abstract

Multilayer oxidation resistant SiC/Cr–Al–Si/glass coating for C/C composites was prepared by a three step method of pack cementation, plasma spraying and slurry dipping. The phase composition, microstructure and oxidation resistance of multilayer SiC/Cr–Al–Si/glass coating were studied by XRD, SEM and isothermal oxidation test at 1773 K in air respectively. Double layer SiC/Cr–Al–Si coating consisting of Al3·21Cr0·47, Cr3Si and Al2O3 can protect C/C composites from oxidation for only 61 h due to its high porosity. When a layer of borosilicate glass doped with MoSi2 was coated on the surface of the as sprayed Cr–Al–Si coating, multilayers of SiC/Cr–Al–Si/glass coating were formed such that they can protect C/C composites from oxidation for 95 h with only 5·3% weight loss and the corresponding weight loss rate is only 0·92×10−4 g cm−2 h−1. The positive effect of the borosilicate glass coating on the oxidation resistance of the coating may be attributed to its own fluidity at high temperature.

Key concepts: Materials science, Borosilicate glass, Coating, Composite material, Microstructure, Cementation (geology), Layer (electronics), Carbon fibers

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