The Role of Anodization in Naturally Cooled Heat Sinks for Power Electronic Devices

Author:

Zhang Zhongchen1,Collins Michael2,Lau Eric3,Botting Chris4,Bahrami Majid1

Affiliation:

1. Laboratory for Alternative Energy Conversion (LAEC), School of Mechatronic Systems Engineering, Simon Fraser University, 250-13450 102 Avenue, Surrey, BC V3T 0A3, Canada

2. Solar Thermal Research Laboratory (STRL), Department of Mechanical and Mechatronics Engineering, University of Waterloo, 200 University Ave. W., Waterloo, ON N2 L 3G1, Canada

3. Department of Engineering, Delta-Q Technologies, 3755 Willingdon Ave., Burnaby, BC V5G 3H3, Canada

4. Department of Research, Delta-Q Technologies, 3755 Willingdon Ave., Burnaby, BC V5G 3H3, Canada

Abstract

Abstract Effect of anodization on the thermal performance of naturally cooled heat sinks in power electronic devices made of die-cast aluminum alloy A380 and machined aluminum alloy 6061 was investigated experimentally and numerically. Various types of anodization were examined with different thickness of anodic aluminum oxide layer (AAO), pore size distributions, and surface coloring conditions. A customized natural convection and thermal radiation experimental chamber was built to measure the cooling capacity and heat sink temperatures. A 3D numerical model was also developed and validated against the collected data to provide more details into the contribution of the radiation heat transfer. The total emittance of the anodized samples was determined by a Fourier transform infrared reflectometer (FTIR) spectroscopy method. The results show a significant improvement in total hemispherical emissivity from 0.14 to 0.92 in anodized die-cast aluminum samples. This increase resulted in a considerable reduction in overall thermal resistance, up to 15%; where up to 41% of the total heat dissipation was contributed by thermal radiation. In spite of the rather distinguishable surface morphologies, the measurements suggested that thermal emissivity of the anodized die-cast Al A380 and Al alloy 6061 samples were in the same range.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference30 articles.

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4. Natural Convection and Radiation Heat Transfer From Staggered Vertical Fins;Int. J. Heat Mass Transfer,1987

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