Porous composite body from Fe3O4/Al and SiO2·RO/SUS system was synthesized by microwave (MW) heating and sponge replica method respectively. A reaction between Fe3O4 and Al was used to fabricate the porous ceramic composite through substitutional combustion synthesis by adequately control of the MW ignition condition. On the other hand, the porous glass composite was made from polyurethane (PU) precursor. Regardless of the mixture systems and processing conditions, both the ceramic and glass composite body revealed the formation of microstructure consisting of micron sized metal particles, uniformly dispersed and distributed in the ceramic/glass matrix. Heating behavior study was performed to evaluate the MW heating ability of the fabricate...
SiC fibre reinforced SiC composites must be >90% dense in order to offer a superior structural mater...
The present study deals with the computer-aided simulation of the microwave heating of metal/glass c...
The paper presents the results of experimental research for manufacture a high mechanical strength t...
Porous glass matrix composites containing well-defined spherical porosity were fabricated employing ...
Macroporous Ceramic Material (Commercial Water Filter Ceramic) was used as the initial material to b...
Nowadays porous ceramics are widely researched, becoming an increasingly marketable material in the ...
A high mechanical strength (6.1 MPa) glass foam was produced by sintering/foaming at 830 ºC in an ex...
A porous silica –silica composite was processed with varying fiber diameters using the slurry mouldi...
Microwave technology was a useful heating process when applied to the recycling of fine stoneware ti...
Investigations of a foam glass-ceramic material synthesized from raw siliceous earth material by the...
The application of microwave radiation as the heating source for the fabrication of glass foams rein...
This paper outlines the development of a microwave heated apparatus for the production of silicon ca...
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Two methods were evaluated in terms of manufacturing of MAX phase preforms characterized with open p...
Macroporous open-celled ceramic foams finds applications in numerous technological fields, like part...
SiC fibre reinforced SiC composites must be >90% dense in order to offer a superior structural mater...
The present study deals with the computer-aided simulation of the microwave heating of metal/glass c...
The paper presents the results of experimental research for manufacture a high mechanical strength t...
Porous glass matrix composites containing well-defined spherical porosity were fabricated employing ...
Macroporous Ceramic Material (Commercial Water Filter Ceramic) was used as the initial material to b...
Nowadays porous ceramics are widely researched, becoming an increasingly marketable material in the ...
A high mechanical strength (6.1 MPa) glass foam was produced by sintering/foaming at 830 ºC in an ex...
A porous silica –silica composite was processed with varying fiber diameters using the slurry mouldi...
Microwave technology was a useful heating process when applied to the recycling of fine stoneware ti...
Investigations of a foam glass-ceramic material synthesized from raw siliceous earth material by the...
The application of microwave radiation as the heating source for the fabrication of glass foams rein...
This paper outlines the development of a microwave heated apparatus for the production of silicon ca...
&nbs...
Two methods were evaluated in terms of manufacturing of MAX phase preforms characterized with open p...
Macroporous open-celled ceramic foams finds applications in numerous technological fields, like part...
SiC fibre reinforced SiC composites must be >90% dense in order to offer a superior structural mater...
The present study deals with the computer-aided simulation of the microwave heating of metal/glass c...
The paper presents the results of experimental research for manufacture a high mechanical strength t...