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- W183114918 abstract "Energy consumption is very essential nowadays and industries are searching for alternative solutions to save energy and optimize production of their goods or services. Currently high-temperature firing using heating filament is widely practised in solidifing green bodies and enhancing mechanical properties of ceramic products. Heating filament method consumes higher energy compared to microwave heating which is better in efficiency and environmental friendly. Triggering microwave heating requires microwave susceptor crucible for energy convertion and this strongly depends on the susceptibility of the constituted materials. Instead of SiC which has higher melting point for casting, the composite of SiC-Al 2 O 3 also offers high susceptibility properties and can be formed at low temperature. Composite of SiC-Al 2 O 3 was studied at different concentration (30, 40, 50, 60, 70 wt.% SiC). Slip casting processing method was applied, and 40 wt.% SiC-Al 2 O 3 crucible was found that to have high electromagnetic wave absorption which produced higher heat (350˚C) within 10 minutes of microwave rays. Impedance spectroscopic measurement also supported that 40 wt.% SiC-Al 2 O 3 has the highest dielectric loss at all measured frequency. The concentration of 40 wt.% of SiC-Al 2 O 3 is suitable for crucible formation as microwave heating application." @default.
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- W183114918 date "2014-01-01" @default.
- W183114918 modified "2023-09-26" @default.
- W183114918 title "Enhanced Electromagnetic Absorption on Formulated SiC-Al 2 O 3 Composite Crucible" @default.
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