Microstructural and electrical properties of cordierite-based ceramics obtained after two-step sintering technique
Author(s) -
Nina Obradović,
Suzana Filipović,
Nataša Djordjević,
Darko Kosanović,
Vladimir B. Pavlović,
Dragan I. Olćan,
Martin Kachlík,
Karel Maca
Publication year - 2016
Publication title -
science of sintering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.309
H-Index - 25
eISSN - 1820-7413
pISSN - 0350-820X
DOI - 10.2298/sos1602157o
Subject(s) - cordierite , sintering , materials science , microstructure , ceramic , ball mill , kiln , scanning electron microscope , composite material , dielectric , dissipation factor , metallurgy , optoelectronics
Cordierite-based ceramic materials are attracting much interest for their various applications in industry, for manufacturing multilayer circuit boards, catalytic converters, filters, thermal insulation, kiln furniture, components of portable electronic devices, etc. In order to reduce production costs and modify cordierite-based materials, mechanical activation can be used. In this study, microstructural and electrical properties of mechanically activated MgO-Al2O3-SiO2 system have been analyzed. The mixtures of MgO-Al2O3-SiO2 powders were mechanically activated in a planetary ball mill for the time periods from 0 to 160 min. Morphological investigations have been performed on the obtained powders. The effects of activation and two-step sintering process on microstructure were investigated by scanning electron microscopy (SEM). Electrical measurements showed variations of the dielectric constant (εr) and loss tangent (tan δ) as a function of time of mechanical treatment
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