Publication | Closed Access
Thermal Conductivity Characterization of Hafnium Diboride‐Based Ultra‐High‐Temperature Ceramics
77
Citations
41
References
2008
Year
EngineeringNetwork ModelThermal PropertiesThermal ProcessesCeramic PowdersThermal ConductivityCeramic Matrix CompositeThermal ConductionCeramic TechnologyMaterials ScienceCeramicsCeramic MaterialThermal PropertyHeat TransferStructural CeramicHigh Temperature MaterialsApplied PhysicsCeramics MaterialsMetal-ceramic SystemsThermal EngineeringThermal Conductivity CharacterizationHfb 2
We evaluated the thermal conductivity of HfB 2 ‐based ultra‐high‐temperature ceramics from laser flash diffusivity measurements in the 25°–600°C temperature range. Commercially available powders were used to prepare HfB 2 composites containing 20 vol% SiC, some including TaSi 2 (5 vol%) and Ir (0.5 or 2 vol%) additions. Samples were consolidated via conventional hot pressing or spark plasma sintering. Processing differences were shown to lead to differences in magnitude and temperature dependence of effective thermal conductivity. We compared results with measured values from heritage materials and analyzed trends using a network model of effective thermal conductivity, incorporating the effects of porosity, grain size, Kapitza resistance, and individual constituent thermal conductivities.
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