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Thermal management solutions utilizing high thermal conductivity graphite foams

机译:利用高导热石墨泡沫的热管理解决方案

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The recent development of light weight foams has led to novel light weight high strength carbon based materials and structures. These materials exhibit very high specific strengths and low thermal conductivities. Likewise, the novel development of a very high thermal conductivity graphite foam will lead to novel "out-of-the-box" solutions for thermal management problems. With a thermal conductivity equivalent to aluminum 6061 and 1/5~h the weight, this material is an enabling technology for thermal management problems ranging from heat sinks to radiators and satellite panels to aircraft heat exchangers. In addition, the open porosity will lead to novel designs that incorporate porous media heat exchangers and phase change materials. For example, by utilizing the foam as a heat exchanger, heat transfer coefficients over two orders of magnitude greater than current metallic designs have been measured. To further demonstrate this phenomenon, a heat exchanger (radiator) for a passenger automobile has been developed that is significantly smaller in size, and testing has demonstrated feasibility to improve the automobiles aerodynamic efficiency and reduce weight.
机译:轻质泡沫的最新发展导致了新颖的轻质高强度碳基材料和结构。这些材料表现出非常高的比强度和低导热率。同样,极高导热率的石墨泡沫的新发展将导致针对热管理问题的新颖“开箱即用”解决方案。这种材料的热导率相当于铝6061的重量,重量仅为1 / 5h,是解决从散热器到散热器,从卫星面板到飞机热交换器的各种热管理问题的使能技术。另外,开放的孔隙率将导致结合多孔介质热交换器和相变材料的新颖设计。例如,通过利用泡沫作为热交换器,已经测量了比当前金属设计大两个数量级的传热系数。为了进一步证明这种现象,已经开发出尺寸显着较小的用于乘用车的热交换器(散热器),并且测试证明了提高汽车的空气动力学效率和减轻重量的可行性。

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