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Extreme Two-Phase Cooling from Laser-Etched Diamond and Conformal, Template-Fabricated Microporous Copper
- Palko, James W.;
- Lee, Hyoungsoon;
- Zhang, Chi;
- Dusseault, Tom J.;
- Maitra, Tanmoy;
- 외 13명
WEB OF SCIENCE
125SCOPUS
140초록
This paper reports the first integration of laser-etched polycrystalline diamond microchannels with template-fabricated microporous copper for extreme convective boiling in a composite heat sink for power electronics and energy conversion. Diamond offers the highest thermal conductivity near room temperature, and enables aggressive heat spreading along triangular channel walls with 1:1 aspect ratio. Conformally coated porous copper with thickness 25 mu m and 5 mu m pore size optimizes fluid and heat transport for convective boiling within the diamond channels. Data reported here include 1280 W cm(-2) of heat removal from 0.7 cm(2) surface area with temperature rise beyond fluid saturation less than 21 K, corresponding to 6.3 x 10(5) W m(-2) K-1. This heat sink has the potential to dissipate much larger localized heat loads with small temperature nonuniformity (5 kW cm(-2) over 200 mu m x 200 mu m with <3 K temperature difference). A microfluidic manifold assures uniform distribution of liquid over the heat sink surface with negligible pumping power requirements (e.g., <1.4 x 10(-4) of the thermal power dissipated). This breakthrough integration of functional materials and the resulting experimental data set a very high bar for microfluidic heat removal.
키워드
- 제목
- Extreme Two-Phase Cooling from Laser-Etched Diamond and Conformal, Template-Fabricated Microporous Copper
- 저자
- Palko, James W.; Lee, Hyoungsoon; Zhang, Chi; Dusseault, Tom J.; Maitra, Tanmoy; Won, Yoonjin; Agonafer, Damena D.; Moss, Jess; Houshmand, Farzad; Rong, Guoguang; Wilbur, Joshua D.; Rockosi, Derrick; Mykyta, Ihor; Resler, Dan; Altman, David; Asheghi, Mehdi; Santiago, Juan G.; Goodson, Kenneth E.
- 발행일
- 2017-12
- 유형
- Article
- 권
- 27
- 호
- 45
- 언어
- ENG
- 출판사
- WILEY-V C H VERLAG GMBH
- 발행국가
- 독일
- ISSN
- E 1616-3028
P 1616-301X