Publication | Open Access
Effect of Si3N4 Addition on Oxidation Resistance of ZrB2-SiC Composites
23
Citations
15
References
2017
Year
Materials EngineeringMaterials ScienceChemical EngineeringHigh Temperature MaterialsZrb2-sic CompositesMechanical PropertiesCorrosionEngineeringCeramic MaterialOxidation ResistanceCeramics MaterialsCarbon MaterialsCyclic ExposuresCyclic ExposureOxide ScaleCarbideCeramic Matrix Composite
The oxidation behavior of ZrB2-20 vol % SiC and ZrB2-20 vol % SiC-5 vol % Si3N4 composites prepared by hot-pressing and subjected to isothermal exposure at 1200 or 1300 °C for durations of 24 or 100 h in air, as well as cyclic exposure at 1300 °C for 24 h, have been investigated. The oxidation resistance of the ZrB2-20 vol % SiC composite has been found to improve by around 20%–25% with addition of 5 vol % Si3N4 during isothermal or cyclic exposures at 1200 or 1300 °C. This improvement in oxidation resistance has been attributed to the formation of higher amounts of SiO2 and Si2N2O, as well as a greater amount of continuity in the oxide scale, because these phases assist in closing the pores and lower the severity of cracking by exhibiting self-healing type behavior. For both the composites, the mass changes are found to be higher during cyclic exposure at 1300 °C by about 2 times compared to that under isothermal conditions.
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