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Comparison of Single-Phase Convection in Additive Manufactured Versus Traditional Metal Foams

机译:添加剂中的单相对流与传统金属泡沫的单相对流比较

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摘要

Metal foams have been often used for thermal management due to their favorable characteristics including high specific surface area (SSA), high thermal conductivity, and low relative density. However, they are accompanied by shortcomings including the significant contact resistances due to attachment method, as well as the need for characterization of foam parameters such as pore diameter and SSA. Additive manufactured (AM) metal foams would eliminate the substrate/foam thermal resistance, decrease the need for pre-usage characterization, and allow for tailoring structures, while also taking advantage of the characteristics of traditionally manufactured foams. A commercial, aluminum foam (nominally 5 pores per inch (PPI), 86.5% porosity) was analyzed using X-ray microcomputed tomography, and a custom-designed metal foam based on the cell diameter and porosity of the commercial sample was subsequently manufactured. Reduced domain computational fluid dynamics/heat transfer (CFD-HT) models were compared against experimental data. Postvalidation, the flow behavior, effect of varying attachment thermal conductivities, and thermal peiformance were numerically investigated, demonstrating the usefulness of validated pore-scale models, as well as the potential for improved performance using AM metal foams over traditionally manufactured foams.
机译:由于具有高比表面积(SSA),高导热率和低相对密度,金属泡沫通常用于热管理。然而,它们伴随着包括附着方法引起的显着接触电阻的缺点,以及需要表征泡沫参数,例如孔径和SSA。制造的添加剂(AM)金属泡沫将消除基板/泡沫热阻,降低对预使用的需要,并允许纵向结构,同时利用传统制造的泡沫的特性。使用X射线微型断层扫描分析商业铝泡沫(标称5孔/英寸(PPI),86.5%孔隙率),随后制造了基于电池直径和商业样品的孔隙率的定制设计的金属泡沫。将降低的域计算流体动力学/传热(CFD-HT)模型与实验数据进行比较。经过验证,流动行为,改变的附着热导体的效果,以及热北方进行了数值研究,展示了验证的孔径模型的有用性,以及使用AM金属泡沫在传统制造的泡沫上改善性能的可能性。

著录项

  • 来源
    《Journal of Heat Transfer》 |2020年第8期|082201.1-082201.12|共12页
  • 作者单位

    G. W. Woodruff School of Mechanical Engineering Georgia Institute of Technology 801 Ferst Drive Atlanta GA 30332;

    G. W. Woodruff School of Mechanical Engineering Georgia Institute of Technology 801 Ferst Drive Atlanta GA 30332;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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