材料科学
散热片
热阻
冷却液
层流
焊接
压力降
流利
传热
铜
散热膏
复合材料
数码产品
热导率
机械工程
光电子学
计算流体力学
电气工程
机械
冶金
工程类
物理
作者
Shan Yin,K.J. Tseng,Jiyun Zhao
标识
DOI:10.1016/j.applthermaleng.2012.11.014
摘要
A single-phase, laminar flow, rectangular, and AlN-based micro-channel heat sink (MCHS) with water coolant has been designed and optimized for power electronics packaging. By fabricating micro-channels in the AlN-layer of direct bond copper, the heat conduction path is minimized and high cooling performance of micro-channels is utilized. The scaling effects, including temperature-dependent fluid properties, entrance effect, viscous dissipation and conjugate heat transfer, are considered. Comparison between CFD simulation by ANSYS Fluent and well-established analytical correlations is carried out and importance of entrance effect is emphasized. For the optimal geometry, the total thermal resistance of the AlN-based MCHS is 0.128 K/W at a pressure drop of 66.6 kPa. The conventional packaging structures, in which the Cu-based MCHS is bonded to the direct bond copper by solder or thermal interface material, are investigated to compare with the proposed structure. The proposed structure shows a reduction in thermal resistance by 15% and 80% respectively.
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