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Thermal Properties
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Carbon Fiber
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Powder Metallurgy
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Heat Sink Materials
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Thermomechanical Properties
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Composite Materials
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Carbon Nanofibers
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Power Electronic Systems
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Electronic Devices
33%
High Temperature
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Thermal Conductivity
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Thermal Management
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Heat Flux
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Heat Sink
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Volume Fraction
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K(I)
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New Composite Materials
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High Thermal Conductivity
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Powder Coating Process
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Cu-Cu
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High Power Density
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Cu Alloy
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Powder Metallurgy Method
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Thermo-mechanical Stress
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Power Electronics Reliability
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Copper Salts
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Metallic Matrix
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Carbon Content
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Carbon Reinforcement
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Cu-based Composites
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Innovative Composites
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Low Coefficient of Thermal Expansion
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Carbon-carbon
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Material Science
Thermal Property
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Composite Material
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Powder Metallurgy
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Thermal Conductivity
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Carbon Fiber
66%
Thermomechanical Property
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Carbon Nanofiber
66%
Density
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Carbon Nanotube
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Thermal Expansion
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Volume Fraction
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Copper Alloys
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Engineering
Composite Material
100%
Powder Metallurgy
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Power Electronics
66%
Carbon Nanofibre
66%
Carbon Nanotube
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Thermal Conductivity
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Power Density
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Coefficient of Thermal Expansion
33%
Heat Flux
33%
High Thermal Conductivity
33%
C Process
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Metallic Matrix
33%