首页> 外文会议>Thermal Investigations of ICs and Systems, 2009. THERMINIC 2009 >Characterization of metal micro-textured thermal interface materials
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Characterization of metal micro-textured thermal interface materials

机译:金属微织构热界面材料的表征

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To address performance limitations of conventional thermal interface materials (TIMs), a metal micro-textured thermal interface material (MMT-TIM) has been developed that consists of a thin metal foil with raised micro-scale features that plastically deform under an applied pressure thereby creating a continuous, thermally conductive, path between the mating surfaces. Here, the influence of various geometrical parameters on the mechanical and thermal performance of hollow conical MMT-TIMs is investigated experimentally. The results demonstrate the influence of feature size, shape, array density and foil thickness. The results also serve to highlight the underlying challenge of characterizing the thermal contact resistance of MMT-TIMs. Future efforts for this project are discussed including the validation of a numerical thermal-mechanical model and development of a relationship between electrical and thermal contact resistance for MMT-TIMs that would allow estimation of the thermal contact resistance using a straightforward electrical measurement.
机译:为了解决常规热界面材料(TIMs)的性能限制,已开发出一种金属微织构的热界面材料(MMT-TIM),该材料由具有凸起微尺度特征的薄金属箔组成,该微尺度特征在施加的压力下可塑性变形,从而在配合面之间形成连续的导热路径。在这里,实验研究了各种几何参数对空心锥形MMT-TIMs的机械和热性能的影响。结果证明了特征尺寸,形状,阵列密度和箔厚度的影响。结果还有助于突出表征MMT-TIM的热接触电阻的潜在挑战。讨论了该项目的未来工作,包括验证热力学数值模型以及开发MMT-TIM的电接触电阻和热接触电阻之间的关系,这将允许使用简单的电测量来估算热接触电阻。

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