Affiliation:
1. Science and Technology on Thermostructural Composite Materials Laboratory Northwestern Polytechnical University Xi'an Shaanxi China
2. Hypersonic Technology Laboratory National University of Defense Technology Changsha Hunan China
Abstract
AbstractIn this work, the static water and oxygen corrosion behavior of SiCf/SiC–SiYBC composites was systematically studied at 1 300°C to 1 500°C. With the increase in corrosion temperature from 1 300°C to 1 500°C, both the residual strength and strength retention rate of SiCf/SiC–SiYBC composites initially increased and then decreased. The highest strength retention rate achieved was 132%, which was 35% higher than that of SiCf/SiC composites. During water and oxygen corrosion of composites, self‐healing boron silicate glass and the Y2Si2O7 phase with excellent resistance to water and oxygen were generated in situ. The oxidation products are fluid at high temperatures and can fill internal pores and microcracks, thus improving the residual strength of the SiCf/SiC–SiYBC composite. The water corrosion resistance of SiCf/SiC–SiYBC materials has been confirmed to be superior to that of SiCf/SiC composites.
Subject
Materials Chemistry,Marketing,Condensed Matter Physics,Ceramics and Composites