首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Fabrication of controlled expansion Al-Si composites by pressureless and spark plasma sintering
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Fabrication of controlled expansion Al-Si composites by pressureless and spark plasma sintering

机译:通过无线和火花等离子体烧结制造受控扩展Al-Si复合材料

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摘要

A combination of low coefficient of thermal expansion (CTE) and decent thermal conductivity (TC) is the reason for the Al-high vol% Si system to become popular for electronic packaging material. In the present work, two process routes, firstly conventional powder metallurgy and then spark plasma sintering (SPS) were utilized for the fabrication of Al-20-60 wt.% Si composites. In addition, effect of small fraction of CNT addition on the CTE of Al-20?wt% Si was studied. Effect of process parameters on the consolidation of the composites in terms of densification, microstructure evolution along with fractographic analysis and strength was studied. CTE and TC of the sintered composites were measured and correlated with the densification, percentage of Si and morphologies of the sintered products. Overall, better densification could be achieved in SPS and the Al-30%Si and Al-40%Si composites SPSed at 550?°C showed average CTE values of 14.52?×?10?6/K and 13.36?×?10?6/K, respectively, in the temperature range of 30–200?°C, which were better than some of the existing alloys with higher Si content. Simultaneously, TC values were 114.4?W/mK and 107.12?W/mK, respectively, for the above two SPSed composites.
机译:低热膨胀系数(CTE)和体面的导热率(Tc)的组合是Al-High Vol%Si系统的原因,用于成为电子包装材料的流行。在本作工作中,两个过程途径,首先是常规粉末冶金,然后火花血浆烧结(SPS)用于制备Al-20-60重量%。%Si复合材料。此外,研究了少数CNT的CNT对Al-20的CNT的影响。研究了工艺参数对致密化的复合材料的整合的影响,研究了微观结构演化以及Fretography分析和强度。测量烧结复合材料的CTE和Tc,与烧结产品的致密化,Si和形态百分比相关。总体而言,在SPS和Al-30%Si和Al-40%Si复合材料中可以实现更好的致密化,在550Ω°C下SPSED显示平均CTE值14.52?×10?6 / K和13.36?×10?在30-200Ω°C的温度范围内,6 / K分别比一些具有较高Si含量的现有合金更好。同时,对于上述两个SPSED复合材料,TC值分别为114.4?W / MK和107.12?W / MK。

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