轻重量高性能热管理与先进的散热器和扩展表面

T. Icoz, M. Arik
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引用次数: 28

摘要

热管理是保持电子元件高效率和可靠性的关键和必不可少的组成部分。在满足重量和体积要求的同时,必须提供足够的冷却,特别是对于空间和重量都很重要的航空电子应用中的被动空气冷却解决方案。应该注意的是,有些电子系统的热溶液占系统总重量的95%或更多。随着材料科学的进步和对更积极的冷却解决方案的需求的增加,发明、制造、表征和实施先进的热材料对于设计紧凑和低重量系统变得至关重要。然而,由于这些材料的各向异性特性的复杂性,它们的热性能和可靠性尚未得到充分的了解。本文的目的是表征先进的热材料在被动空气冷却应用。对各种先进的散热器材料和制造的原型进行了计算和实验相结合的研究。结果与传统使用的铝散热器进行了比较,表明可以实现显着的重量节省。提出了一种测量散热器质量有效冷却能力的综合性能指标。它被定义为每单位质量的散热器的冷却性能,并表明先进的材料可以比传统的铝散热器性能好十倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Light Weight High Performance Thermal Management With Advanced Heat Sinks and Extended Surfaces
Thermal management is a critical and essential component of maintaining high efficiency and reliability of electronic components. Adequate cooling must be provided while meeting the weight and volumetric requirements, especially for passive air-cooling solutions in avionics applications where space and weight are at a premium. It should be noted that there are electronic systems where thermal solution contributes 95% or more to the total weight of the system. With recent advancements in material science and increase in demand for more aggressive cooling solutions, it has become critical to invent, manufacture, characterize, and implement advanced thermal materials for the design of compact and low weight systems. However, because of the complexity due to anisotropic properties of these materials, their thermal performances and reliability are yet to be fully understood. The present paper aims at characterization of advanced thermal materials in passive air-cooling applications. A combined computational and experimental investigation is performed on various advanced heat sink materials and manufactured prototypes. Results are compared with the traditionally used aluminum heat sink and showed that significant weight savings can potentially be achieved. A composite figure of merit is proposed for measuring mass effective cooling capabilities of heat sinks. It is defined as the cooling performance per unit mass of heat sink and shown that advanced materials can perform as much as ten times better than conventional aluminum heat sinks.
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