Publication | Open Access
Evaluation of Ultra-High Temperature Ceramics for Aeropropulsion Use
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2001
Year
Materials ScienceMaterials EngineeringEngineeringCeramicsZirconium DiborideCeramic MaterialCeramics MaterialsCeramic SynthesisUltra-high Temperature CeramicsCeramic TechnologyEngineering CeramicStructural CeramicCeramic Matrix CompositeUhtc Perform
Among the ultra-high temperature ceramics (UHTC) are a group of materials consisting of zirconium diboride or hafnium diboride plus silicon carbide, and in some instances, carbon. These materials offer a good combination of properties that make them candidates for airframe leading edges on sharp-bodied reentry vehicles. These UHTC perform well in the environment for such applications, i.e., air at low pressure. The purpose of this study was to examine three of these materials under conditions more representative of a propulsion environment, i.e., higher oxygen partial pressure and total pressure. Results of strength and fracture toughness measurements, furnace oxidation and high velocity thermal shock exposures are presented for ZrB2 plus 20 volume % SiC, ZrB2 plus 14 volume % SiC plus 30 volume % C, and SCS-9a SiC fiber reinforced ZrB2 plus 20 volume % SiC. The poor oxidation resistance of UHTCs is the predominant factor limiting their applicability to propulsion applications.