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  4. Effect of carbide formation in copper-graphite composites on thermo-physical properties
 
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2009
Conference Paper
Title

Effect of carbide formation in copper-graphite composites on thermo-physical properties

Other Title
Einfluss der Carbildbildung in Kupfer-Graphit-verbundwerkstoffen auf die thermophysikalischen Eigenschaften
Abstract
The aim of this work is the development of copper matrix composites reinforced with natural graphite flakes for thermal management applications by powder metallurgical processes. The strong anisotropic composites with 60vol.-% graphite represent a thermal conductivity of 560 W/(mK) and a low CTE of 7 - 8 ppm/K in-plane. A carbide formation is not necessary for the pure Cu/C/Xflake system to enhance the thermal conductivity and to reduce the CTE. But in order to increase the composite's bending strength an interfacial reaction like boron carbide formation will be essential at the Cu/C-interface.
Author(s)
Weidmüller, H.
Weißgärber, T.
Schubert, T.
Kieback, B.
Mainwork
APNFM 2008, Advanced processing for novel functional materials  
Conference
International Conference Advanced Processing of Novel Functional Materials (APNFM) 2008  
Language
English
Fraunhofer-Institut für Fertigungstechnik und Angewandte Materialforschung IFAM  
Keyword(s)
  • Metallmatrix-Verbundwerkstoff

  • Kupfer

  • Graphit

  • Wärmemanagement

  • Wärmeleitfähigkeit

  • anisotropes Material

  • Wärmeausdehnungskoeffizient

  • XRD-Röntgenstrahlbeugung

  • Rasterelektronenmikroskopie (REM)

  • Mischungsverhältnis

  • Carbid

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