Publication | Closed Access
Synthesis and Properties of Porous Single‐Phase β′‐SiAlON Ceramics
38
Citations
15
References
2002
Year
Materials ScienceFull DensificationSinteringEngineeringElectron MicroscopyCeramicsCeramic MaterialApplied PhysicsCeramics MaterialsCeramic SynthesisCeramic PowdersSingle‐phase β′‐SialonCeramic TechnologyFunctional MaterialsMicrostructure
Single‐phase β′‐SiAlON (Si 6− z Al z O z N 8− z , z = 0–4.2) ceramics with porous structure have been prepared by pressureless sintering of powder mixtures of á‐Si 3 N 4 , AlN, and Al 2 O 3 of the SiAlON compositions. A solution of AlN and Al 2 O 3 into Si 3 N 4 resulted in the β′‐SiAlON, and full densification was prohibited because no other sintering additives were used. Relative densities ranging from 50%–90% were adjusted with the z ‐value and sintering temperature. The results of X‐ray diffraction, scanning electron microscopy, and transmission electron microscopy analyses indicated that single‐phase β′‐SiAlON free from a grain boundary glassy phase could be obtained. Both grain and pore sizes increased with increasing z ‐value. Low z ‐value resulted in a relatively high flexural strength.
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