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  4. The AC conductivity of liquid-phase-sintered silicon carbide
 
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2007
Journal Article
Title

The AC conductivity of liquid-phase-sintered silicon carbide

Other Title
Die Wechselstromleitfähigkeit von flüssigphasegesintertem Siliciumcarbid
Abstract
Analysis of the AC conductivity, complex dielectric constant, and the resulting immittance spectra of liquid-phase-sintered silicon carbide (SiC) ceramics showed that for this system, the dominant experimental observations are due to a multicomponent grain-boundary phase and not due to SiC grains. This is confirmed by noting that the temperature dependence of the conductivity of the components, derived from the impedance spectra, is proportional to exp[-(T0/T)1/4] and not to exp[-C/T]. The electrical properties of some of the grain boundaries are also found to be excitation voltage dependent. Combining the electrical results, which are also found to depend on the method of preparation and heat treatment, with a Rietveld analysis allows the composition of the grain boundaries of the models to be deduced. Entnommen aus <a_href="http://www.fiz-technik.de/db/b_tema.htm" target="_blank">TEMA</a>
Author(s)
Sauti, G.
Can, A.
McLachlan, D.S.
Herrmann, M.
Journal
Journal of the American Ceramic Society  
DOI
10.1111/j.1551-2916.2007.01792.x
Language
English
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Keyword(s)
  • ceramic

  • grain boundary

  • silicon compound

  • sintering

  • electrical conductivity

  • Siliciumcarbid

  • Sinterhilfsmittel

  • Yttriumoxid

  • Siliciumoxid

  • Aluminiumoxid

  • Flüssigphasesintern

  • Mikrostruktur

  • Korngrenze

  • Phasenzusammensetzung

  • Rietveld-Analyse

  • Impedanzspektroskopie

  • Wärmebehandlung=Materialbearbeitung

  • Temperaturabhängigkeit

  • Frequenzabhängigkeit

  • Dielektrizitätskonstante

  • Tieftemperaturtechnik

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