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On critical aspects of infiltrated Al/diamond composites for thermal management: Diamond quality versus processing conditions

机译:关于渗透的铝/金刚石复合材料用于热管理的关键方面:金刚石质量与加工条件

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摘要

Al/diamond composites containing diamond particles of different qualities have been manufactured by gas pressure-assisted metal infiltration and characterized by thermal conductivity (TC) measurements. The results show that the intrinsic thermal conductivity of diamond (varied with the diamond quality) plays a minor role on TC. TC is mainly governed by the Al–diamond interface characteristics, which are determined by a proper control exerted through processing conditions. Albeit a very low cost and low quality diamond is used, a high value of 667 W/m K has been measured for Al/diamond composites produced under optimized processing conditions. Values above 740 W/m K are reported for the best diamond quality explored in this work. These experimental results, which assign the control over TC mainly to the interface conductance, suggest that many of the limiting values of TC reported in literature for the different explored metal–diamond systems, need to be reconsidered by proper precise control of interface evolution.
机译:含有不同质量金刚石颗粒的Al /金刚石复合材料是通过气压辅助金属渗透法制备的,并通过热导率(TC)测量来表征。结果表明,金刚石的固有热导率(随金刚石质量而变化)对TC的影响较小。 TC主要由Al-金刚石界面特征决定,该特征由加工条件施加的适当控制决定。尽管使用了非常低成本和低质量的金刚石,但在优化的加工条件下生产的Al /金刚石复合材料的测量值高达667 W / mK。据报道,高于740 W / m K的值是这项工作中探索的最佳钻石质量。这些实验结果将对TC的控制主要分配给了界面电导,这表明,文献中针对不同的勘探金属-金刚石系统报道的许多TC极限值,都需要通过对界面演化的适当精确控制来重新考虑。

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