Journal of the American Ceramic Society · 2001 · 157 citations · 17 references
Materials SciencePore Size DistributionChemical EngineeringPore StructureGas‐phase ReactionEngineeringCeramics MaterialsSic CeramicPorosityPorous Biocarbon TemplateCarbideCeramic SynthesisCeramic PowdersCeramic TechnologyPorous BodyMicrostructureSilicon Monoxide
Oak has been converted to a porous biocarbon template by annealing in an inert atmosphere above 800°C. Subsequent infiltration with gaseous SiO at 1550–1600°C under flowing argon of atmospheric pressure finally resulted in the formation of a porous, cellular β‐SiC ceramic. The conversion retains the biomorphic cellular morphology of oak tissue. While pores in the cell walls with a diameter less than ∼1 μm vanished, two distinct pore channel maxima representing tracheidal cells and large vessels remained in the SiC ceramic. Depending on the cellular morphology of different kinds of wood, e.g., strut thickness and pore size distribution, gas‐phase conversion to single‐phase β‐SiC can be used to manufacture cellular ceramics with a wide range of pore channel diameters.
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The Corrosion and Oxidation of Metals
U. R. Evans, C. V. King · Journal of The Electrochemical Society · 1961 · 1.2K citations
C. Greskovich, J.H. Rosolowski · Journal of the American Ceramic Society · 1976 · 303 citations
Fiber-reinforced silicon carbide
E. Fitzer, Rainer Gadow · American Ceramic Society bulletin · 1986 · 242 citations
Materials Science, Materials Engineering, Chemical Engineering +12
Biomimetic Process for Producing SiC “Wood”
Toshitaka Ota, Minoru Takahashi, Toshiyuki Hibi et al. · Journal of the American Ceramic Society · 1995 · 201 citations