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Title: High conductivity, low cost aluminum composite for thermal management

Technical Report ·
OSTI ID:512653

In order to produce an inexpensive packaging material that exhibits high thermal conductivity and low CTE, Technical Research Associates, Inc. (TRA) has shown in Phase I the feasibility of incorporating natural flake graphite in an aluminum matrix. TRA has developed a proprietary coating technique where graphite flakes have been coated with a thin layer of molybdenum/molybdenum carbide (approximately 0.2 microns). This barrier coating can protect the graphite flake from chemical reaction and high temperature degradation in molten aluminum silicon alloys. Methods to successfully vacuum infiltrate coated flake with molten aluminum alloys were developed. The resulted metal matrix composites exhibited lower CTE than aluminum metal. The CTE of the composites were significantly lower than aluminum and its alloys. The CTE can potentially be tailored for specific applications. The in plane thermal conductivity was higher than the aluminum matrix alloy. The thermal conductivity and CTE of the composite may be significantly improved by improving the bond strength of the molybdenum coating on the graphite flake. The flake can potentially be incorporated in the molten aluminum and pressure die cast to align the flakes within the aluminum matrix. By preferentially aligning high conductivity graphite flakes within a plane or direction, the thermal conductivity of the resulting composite will be above pure aluminum in the alignment direction.

Research Organization:
Technical Research Associates, Inc., Salt Lake City, UT (United States)
OSTI ID:
512653
Report Number(s):
AD-A-324430/8/XAB; CNN: Contract DAAH01-96-C-R231, ARPA ORDER-611; TRN: 71880271
Resource Relation:
Other Information: DN: Original contains color plates: All DTIC reproductions will be in black and white; PBD: Apr 1997
Country of Publication:
United States
Language:
English