Novel processing and characterization of Cu/CNF nanocomposite for high thermal conductivity applications
Author:
Publisher
Elsevier BV
Subject
General Engineering,Ceramics and Composites
Reference21 articles.
1. Korb G, Buchgrader W, Schubert T. Thermophysical properties and microstructure of short carbon fibre reinforced Cu-matrix composites made by electroless copper coating or powder metallurgical route respectively. In: IEEE/CPMT Berlin, Int’l electronics manufacturing technology symposium; 1998.
2. Elastic moduli, thermal expansion and microstructure of copper-matrix composite reinforced by continuous graphite fibres;Silvain;Composites,1994
3. Structural and thermal properties of hot pressed Cu/C matrix composite materials used for thermal management of high power electronic devices;Silvain;Mater Sci Forum,2007
4. Carbon nanotube–metal-oxide nanocomposites: microstructure electrical conductivity and mechanical properties;Flahaut;Acta Mater,2000
5. Thermal expansion characteristics of cast Cu based metal matrix composites;Praksan;Composites Part A,1997
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