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Micro-structured rough surfaces by laser etching for heat transfer enhancement on flush mounted heat sinks

机译:通过激光蚀刻进行微结构粗糙表面,用于嵌入式散热器上的热传递增强

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The aim of this work is to improve heat transfer performances of flush mounted heat sinks used in electronic cooling. To do this we patterned 1.23 cm~2 heat sinks surfaces by micro-structured roughnesses built by laser etching manufacturing technique, and experimentally measured the convective heat transfer enhancements due to different patterns. Each roughness differs from the others with regards to the number and the size of the micro-fins (e.g. the micro-fin length ranges from 200 to 1100 μm). Experimental tests were carried out in forced air cooling regime. In particular fully turbulent flows (heating edge based Reynolds number ranging from 3000 to 17000) were explored. Convective heat transfer coefficient of the best micro-structured heat sink is found to be roughly two times compared to the smooth heat sinks one. In addition, surface area roughly doubles with regard to smooth heat sinks, due to the presence of micro-fins. Consequently, patterned heat sinks thermal transmittance [W/K] is found to be roughly four times the smooth heat sinks one. We hope this work may open the way for huge boost in the technology of electronic cooling by innovative manufacturing techniques.
机译:这项工作的目的是改善在电子冷却中使用的冲洗安装散热器的传热性能。为了做到这一点,我们通过激光蚀刻制造技术构建的微结构粗糙度来图案化1.23cm〜2散热器表面,并通过不同的图案测量了对流传热增强。每个粗糙度与其他粗糙度不同于微鳍的数量和尺寸(例如,微鳍长度范围为200至1100μm)。在强制空气冷却状态下进行实验测试。特别是完全湍流(探索了3000至17000的加热边缘的雷诺数)。与光滑的散热器相比,发现最佳微结构散热器的热传热系数大约两次。此外,由于存在微鳍片,表面积在光滑的散热器方面大致加倍。因此,图案化的散热器热透射率[W / K]被发现大约是光滑散热器的大约四倍。我们希望这项工作可能在通过创新制造技术开辟巨大推动技术的巨大推动方式。

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