Szczegóły publikacji

Opis bibliograficzny

Epoxy matrix magnetic composites with enhanced thermal conductivity / K. GĄSKA, A. Rybak, C. KAPUSTA, G. Kmita, R. Sekuła // W: ICCST/9 : 9th international conference on Composite Science and Technology : 2020 – Scientific and Industrial Challenges : Sorrento, Naples, Italy 24–26 April, 2013 : proceedings / ed. Michele Meo. — Lancaster : DEStech Publications, Inc., cop. 2013 + CD. — ISBN: 978-1-60595-113-3. — S. 802–807. — Bibliogr. s. 806–807, Abstr. — G. Kmita, R. Sekuła afiliacja: ABB Corporate Research Center

Autorzy (5)

Dane bibliometryczne

ID BaDAP76993
Data dodania do BaDAP2013-10-25
Rok publikacji2013
Typ publikacjimateriały konferencyjne (aut.)
Otwarty dostęptak
Konferencja9th international conference on Composite Science and Technology : 2020 – Scientific and Industrial Challenges

Abstract

In this research, epoxy matrix composites filled with hard magnetic material namely strontium ferrite have been investigated. Samples with different content of filler were prepared both with and without presence of the external magnetic field during manufacturing step in order acquire isotropic and anisotropic distribution of the filler respectively. Appropriate orientation of magnetic field was used to obtain samples with parallel or perpendicular alignment of the filler to the field. Thermal conductivity was studied as the function of temperature for selected set of samples. As it was expected, the orientation of filler along the direction of applied magnetic field results in enhancement of thermal conductivity, as the conductive paths of filler are more likely to create. XRD structural characterisation and microscopic observations of filler and composites have been presented. The model predictions were analysed and validated with experimental results. Analysis of thermal conductivity for the composites and its constituents as well as its temperature dependence seems to be a promising method for determination of its mechanism, including the role of interfaces in particular.

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Magnetic-aligned, magnetic-filled epoxy composites with enhanced thermal conductivity / Karolina GĄSKA, Grzegorz Kmita, Andrzej Rybak, Robert Sekuła, Kamil GOC, Czesław KAPUSTA // Journal of Materials Science ; ISSN 0022-2461. — 2015 — vol. 50 iss. 6, s. 2510–2516. — Bibliogr. s. 2516, Abstr. — Publikacja dostępna online od: 2015-01-06
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Enhanced thermal conductivity of epoxy-matrix composites with hybrid fillers / Karolina GĄSKA, Andrzej Rybak, Czesław KAPUSTA, Robert Sekuła, Artur Siwek // Polymers for Advanced Technologies ; ISSN 1042-7147. — 2015 — vol. 26 iss. 1, s. 26–31. — Bibliogr. s. 31