2011Unpublished venueRequires access

Paper study on thermal conductivity of Al2O3 thin film of different thicknesses on copper substrate under different contact pressures

K. Dinash, D. Mutharasu, Y.T. Lee

Open publisher page 6 citations

Abstract

Thermal interface resistance of solids is an important factor for heat conduction from one solid to another. Interface resistance disrupts heat flow in systems like CPUs and various solid state devices like LEDs. Interface materials play an important role in heat transport through interface. In this study, Al203with different thickness was coated on a copper substrate. The overall thermal conductivity of the material is measured at different contact pressures. It was observed that overall thermal conductivity of the system was affected by thickness of the Al2O3. It was also observed that the overall thermal conductivity increases with increasing pressure.

About this research paper

What this paper is about

Thermal interface resistance of solids is an important factor for heat conduction from one solid to another. Interface resistance disrupts heat flow in systems like CPUs and various solid state devices like LEDs. Interface materials play an important role in heat transport through interface. In this study, Al203with different thickness was coated on a copper substrate. The overall thermal conductivity of the material is measured at different contact pressures. It was observed that overall thermal conductivity of the system was affected by thickness of the Al2O3. It was also observed that the overall thermal conductivity increases with increasing pressure.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Thermal interface resistance of solids is an important factor for heat conduction from one solid to another. Interface resistance disrupts heat flow in systems like CPUs and various solid state devices like LEDs. Interface materials play an important role in heat transport through interface. In this study, Al203with different thickness was coated on a copper substrate. The overall thermal conductivity of the material is measured at different contact pressures. It was observed that overall thermal conductivity of the system was affected by thickness of the Al2O3. It was also observed that the overall thermal conductivity increases with increasing pressure.

Key concepts: Thermal conductivity, Substrate (aquarium), Thermal conduction, Materials science, Copper, Interface (matter), Thermal resistance, Heat flow

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