High thermal conductivity, low thermal expansion and low density are three important features in novel materials for high performance electronics, mobile applications and aerospace. Spark plasma sintering was used to produce light metal–graphite composites with an excellent combination of these three properties. By adding up to 50 vol.% of macroscopic graphite flakes, the thermal expansion coefficient of magnesium and aluminum alloys was tuned down to zero or negative values, while the specific thermal conductivity was over four times higher than in copper. No degradation of the samples was observed after thermal stress tests and thermal cycling. Tensile strength and hardness measurements proved sufficient mechanical stability for most ther...
The optimization of metal–matrix composite material is linked firstly with the intrinsic properties ...
International audienceAluminum (Al) matrix composite materials reinforced with graphite flakes (GF) ...
A family of novel graphite-based composites reinforced with a dispersion of molybdenum carbide parti...
High thermal conductivity, low thermal expansion and low density are three important features in nov...
Light materials with high thermal conductivity and low thermal expansion have a wide application pot...
High thermal conductivity (TC) and a tunable coefficient of thermal expansion are essential propert...
We developed a nanocomposite with highly aligned graphite platelets in a copper matrix. Spark plasma...
The addition of graphitic fibers and flakes as fillers is commonly used to control the thermal expan...
In the microelectronic industry, the ever increase in power density due to miniaturization of electr...
An Al matrix composite reinforced with 40 vol% graphite flake (Gf) was developed by powder metallurg...
In this research, copper nanocomposites reinforced by graphene nanoplatelets (GNPs) were fabricated...
The quest for improvement of thermal conductivity in every area including aerospace structures is ga...
Aluminum matrix composites reinforced with carbon fibers or diamond particles have been fabricated b...
The high specific conductivity of graphite fiber/copper matrix (Gr/Cu) composites offers great poten...
The thermal expansion behaviors of few-layered graphene (FLG)/Al composites fabricated via spark pla...
The optimization of metal–matrix composite material is linked firstly with the intrinsic properties ...
International audienceAluminum (Al) matrix composite materials reinforced with graphite flakes (GF) ...
A family of novel graphite-based composites reinforced with a dispersion of molybdenum carbide parti...
High thermal conductivity, low thermal expansion and low density are three important features in nov...
Light materials with high thermal conductivity and low thermal expansion have a wide application pot...
High thermal conductivity (TC) and a tunable coefficient of thermal expansion are essential propert...
We developed a nanocomposite with highly aligned graphite platelets in a copper matrix. Spark plasma...
The addition of graphitic fibers and flakes as fillers is commonly used to control the thermal expan...
In the microelectronic industry, the ever increase in power density due to miniaturization of electr...
An Al matrix composite reinforced with 40 vol% graphite flake (Gf) was developed by powder metallurg...
In this research, copper nanocomposites reinforced by graphene nanoplatelets (GNPs) were fabricated...
The quest for improvement of thermal conductivity in every area including aerospace structures is ga...
Aluminum matrix composites reinforced with carbon fibers or diamond particles have been fabricated b...
The high specific conductivity of graphite fiber/copper matrix (Gr/Cu) composites offers great poten...
The thermal expansion behaviors of few-layered graphene (FLG)/Al composites fabricated via spark pla...
The optimization of metal–matrix composite material is linked firstly with the intrinsic properties ...
International audienceAluminum (Al) matrix composite materials reinforced with graphite flakes (GF) ...
A family of novel graphite-based composites reinforced with a dispersion of molybdenum carbide parti...