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M. Hudak

Publications and source records attributed to M. Hudak.

2 recordsLinked to original sources

Mechanical and dielectric response of microcomposites of the type: ferroelastic-dielectric

Dynamic dielectric and mechanical responses of the microcomposites of the ferroelastic-dielectric type were studied in this paper. The mechanical inclusions-matrix interactions have influence on the mechanical moduli of the composite. We have studied a mechanical response of the composite which consists of the material M and of the other material I in which dispersion of mechanic moduli of particles is present. The inclusions of the dielectric material in the ferroelastic matrix has the effect on the dielectric response of the microcomposite. We have found conditions for which the inclusions have the effect of enhancement of the dielectric response. Results of low frequency dielectric constant and dielectric loss in orthorhombic $ Al_{2}(WO_{4})_{3}$ show for polycrystalline material, where voids play the role of the dielectric material, their linear increasing dependence on increasing hydrostatic pressure p. These facts are qualitatively explained within our theory.

cond-mat.mtrl-sci

On Static Dielectric Response of Microcomposites of the Type Ferrolastics-Dielectrics For Application in Solid Oxide Fuel Cells (SOFC)

We describe the static dielectric response of ferroelastic-dielectric microcomposites. Dependence on temperature, pressure and concentration is considered for temperatures in the paraelastic transition. In recent years there has been considerable interest in perovskite oxides for application in solid oxide fuel cells (SOFC), exhaust gas sensors in automobiles, membranes for separation processes and as catalysts, which are of the ferroeleastic nature, f.e. of the ($ LaSrCoO_{3}$) type. Ferroelastic-dielectric microcomposites and measurement of their properties may improve properties of perovskite oxides for these applications.

cond-mat.mtrl-sci