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Alloy development for highly conductive thermal management materials using copper-diamond composites fabricated by field assisted sintering technology

机译:使用通过场辅助烧结技术制造的铜-金刚石复合材料开发高导电性热管理材料的合金

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摘要

Improving thermal management materials is critical to many industries including the microelectronics where smaller components lead to larger heat densities. Performance of thermal management materials are largely governed by the thermal conductivity of the material. Commercial diamond particles have a very high thermal conductivity, but their inclusion into conductive metals such as copper is challenging due to a lack of compatibility which creates a poor interface between materials. This study uses a powder metallurgy approach employing an alloyed powder blend to act as an agent to improve the interface leading to improved thermal properties. Results show that minor additions of zirconium to the copper matrix is successful in improving the interface and allows for improvement of thermal conductivity up to a maximum of 533 W/m K with 40 vol.% diamond. Energy-dispersive X-ray spectroscopy mapping analysis shows that additions of zirconium are vastly better than chromium for improvement of interface. It is shown that caution must be taken when adding alloying elements because small additions result in a rapid decrease in conductivity of the alloy before diamonds are added.
机译:改进热管理材料对许多行业至关重要,包括微电子行业,其中较小的组件会导致较大的热密度。热管理材料的性能在很大程度上取决于材料的热导率。市售的金刚石颗粒具有很高的导热率,但是由于缺乏相容性而难以在材料之间形成界面,因此将它们包含在导电金属(如铜)中具有挑战性。这项研究使用粉末冶金方法,该方法采用合金粉末共混物作为试剂来改善界面,从而改善热性能。结果表明,向铜基体中少量添加锆可以成功地改善界面,并允许以40%(体积)的金刚石将导热率提高到最高533 W / mK。能量色散X射线光谱图分析表明,锆的添加大大优于铬,以改善界面。结果表明,添加合金元素时必须谨慎,因为少量添加会导致在添加金刚石之前合金电导率迅速下降。

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