Development and Characterization of High Conductivity Graphite Foams for Thermal Management Applications

Author:

Gyekenyesi A.L.,Singh M.,Smith C.E.,Stansberry P.G.,Alam M. K.,Vrable D.L.

Publisher

John Wiley & Sons, Inc.

Reference12 articles.

1. R. Watts G. Maxwell M. Steenwyk J. Biels S. Chang T. Carroll Updates for Transition Potential of Light Weight Composite Aircraft & Spacecraft Thermal Management Components SAMPE Fall Technical Conference and Exhibition 2007

2. M.F. Ashby Metal Foams: A Design Guide 2000

3. M.D. Sarzynski Carbon Foam Characterization: Sandwich Flexure, Tensile and Shear Response 2003

4. High-Thermal-Conductivity, Mesophase-Pitch-Derived Carbon Foams: Effect of Precursor on Structure and Properties;Klett;Carbon,2000

5. Cellular Ceramics

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1. Carbon meringues derived from flavonoid tannins;Carbon;2013-12

2. Numerical Study of a Thermal Energy Storage Device Utilizing Graphite Foam Infiltrated with a Phase Change Material;Journal of Materials Engineering and Performance;2013-11-01

3. Compressive Behavior of Conductive Graphite Foams;Journal of Materials Engineering and Performance;2011-12-27

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