Porous liquid-phase-sintered SiC (L-SiC) ceramics were successfully fabricated by hot press sintering (HP) at 1800 °C in argon, using Al2O3 and Y2O3 as oxide additions. By varying the starting coarse SiC particle size, the relationships between pore microstructures and flexural strength as well as gas permeability of porous L-SiC were examined. All the as-sintered samples possessed homogeneous interconnected pores. The porosity of porous L-SiC decreased from 34.0% to 25.9%, and the peak pore size increased from 1.1 to 3.8 μm as the coarse SiC particle sizes increased. The flexural strengths of porous L-SiC ceramics at room temperature and 1000 °C were as high as 104.3 ± 7.3 MPa and 78.8 ± 5.1 MPa, respectively, thou...
Mullite bonded porous SiC ceramics were synthesized by infiltrating a SIC porous compact with a liqu...
Cordierite-bonded porous SiC ceramics were prepared by air sintering of cordierite sol infiltrated p...
Silicon carbide ceramics are very interesting materials to engineering applications because of their...
The structure and the electrical properties of porous and dense liquid-phase sintered silicon carbid...
Oxide bonded porous SiC ceramics were synthesized by infiltrating a liquid precursor of yttrium alum...
Porous silicon carbide (SiC) is a promising ceramic for high-temperature applications due to its uni...
The achievement of high gas permeability is a key factor in the development of porous SiC ceramics f...
The structure and phase formation of porous liquid phase sintered silicon carbide (porous LPS-SiC), ...
Different LPS-SiC were produced by pressureless sintering in argon atmosphere, starting from differ...
The structure and phase formation of porous liquid phase sintered silicon carbide (porous LPS-SiC), ...
Microstructure development and phase formation processes during sintering of silicon carbide based m...
AbstractPorous silicon carbide ceramics were fabricated by liquid phase sintering with 1wt% Al2O3–1w...
During the sintering of porous liquid phase sintered silicon carbide (porous LPS-SiC) a strong inter...
Porous silicon carbide ceramics were fabricated by liquid phase sintering with 1 wt% Al2O3–1 wt% Y2O...
AbstractPorous silicon carbide ceramics were fabricated by liquid phase sintering with 1wt% Al2O3–1w...
Mullite bonded porous SiC ceramics were synthesized by infiltrating a SIC porous compact with a liqu...
Cordierite-bonded porous SiC ceramics were prepared by air sintering of cordierite sol infiltrated p...
Silicon carbide ceramics are very interesting materials to engineering applications because of their...
The structure and the electrical properties of porous and dense liquid-phase sintered silicon carbid...
Oxide bonded porous SiC ceramics were synthesized by infiltrating a liquid precursor of yttrium alum...
Porous silicon carbide (SiC) is a promising ceramic for high-temperature applications due to its uni...
The achievement of high gas permeability is a key factor in the development of porous SiC ceramics f...
The structure and phase formation of porous liquid phase sintered silicon carbide (porous LPS-SiC), ...
Different LPS-SiC were produced by pressureless sintering in argon atmosphere, starting from differ...
The structure and phase formation of porous liquid phase sintered silicon carbide (porous LPS-SiC), ...
Microstructure development and phase formation processes during sintering of silicon carbide based m...
AbstractPorous silicon carbide ceramics were fabricated by liquid phase sintering with 1wt% Al2O3–1w...
During the sintering of porous liquid phase sintered silicon carbide (porous LPS-SiC) a strong inter...
Porous silicon carbide ceramics were fabricated by liquid phase sintering with 1 wt% Al2O3–1 wt% Y2O...
AbstractPorous silicon carbide ceramics were fabricated by liquid phase sintering with 1wt% Al2O3–1w...
Mullite bonded porous SiC ceramics were synthesized by infiltrating a SIC porous compact with a liqu...
Cordierite-bonded porous SiC ceramics were prepared by air sintering of cordierite sol infiltrated p...
Silicon carbide ceramics are very interesting materials to engineering applications because of their...