Thermal performance of air-cooled hybrid heat sinks for a low velocity environment

M. Vogel
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引用次数: 12

Abstract

Experimental procedures were used to compare thermal performance characteristics for similar shaped air-cooled heat sinks manufactured from metallic and non-metallic materials. The heat sink geometry was designed and optimized with the intent of cooling a single die which is dissipating 100 watts in a desktop, workstation environment. One of the heat sinks was fabricated by bonding a copper base to a machined, graphite fin structure which has a uni-directional thermal conductivity of 800 W/m C. At 183 air velocity of 150 linear feet per minute (lfm) and an estimated pressure loss of less than 0.039 inches of water, the measured sink-to-air thermal resistance was 0.53 C/W for this copper/graphite hybrid design. Measured junction-to-sink thermal resistances were less than 0.20 C/W when a commercially available land grid array package was used to directly attach a copper heat sink to a 0.50"/spl times/0.50"/spl times/0.015" thermal test chip. Measured heat sink thermal resistances were in relatively good agreement with predicted heat sink resistance values for sea level atmospheric conditions. A modeling simplification technique is presented which allows the numerical computational time to be reduced by at least 50 percent for heat sink optimization studies. Numerical computational techniques were used to estimate the effect of reduced air density on heat sink performance for high altitude, low air velocity environmental conditions.<>
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低速环境下风冷混合式散热器的热性能
采用实验方法比较了由金属和非金属材料制成的类似形状的风冷散热器的热性能特征。散热器的几何形状被设计和优化,目的是冷却一个在桌面,工作站环境中耗散100瓦的单个模具。其中一个散热器是通过将铜底座粘接在机械加工的石墨翅片结构上制成的,该结构的单向导热系数为800 W/m C。在183空气速度为150线性英尺/分钟(lfm),估计压力损失小于0.039英寸的情况下,这种铜/石墨混合设计的散热器对空气的热阻为0.53 C/W。当使用市售的陆地电网阵列封装将铜散热器直接连接到0.50"/spl倍/0.50"/spl倍/0.015"热测试芯片时,测量到的结-散热器热阻小于0.20 C/W。测量的热沉热阻与海平面大气条件下预测的热沉热阻值相对较好地吻合。提出了一种简化模型的方法,可以使散热器优化研究的数值计算时间减少至少50%。采用数值计算技术估计了在高海拔、低风速环境条件下空气密度降低对散热器性能的影响。
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