Processing of Al/SiC composites in continuous solid-liquid co-existent state by SPS and their thermal properties

作者:Mizuuchi Kiyoshi*; Inoue Kanryu; Agari Yasuyuki; Nagaoka Toru; Sugioka Masami; Tanaka Motohiro; Takeuchi Takashi; Tani Jun ichi; Kawahara Masakazu; Makino Yukio; Ito Mikio
来源:Composites Part B: Engineering , 2012, 43(4): 2012-2019.
DOI:10.1016/j.compositesb.2012.02.004

摘要

Silicon carbide (SiC)-particle-dispersed-aluminum (Al) matrix composites were fabricated in a unique fabrication method, where the powder mixture of SiC, pure Al and Al-5mass% Si alloy was uniquely designed to form continuous solid-liquid co-existent state during spark plasma sintering (SPS) process. Composites fabricated in such a way can be well consolidated by heating during SPS processing in a temperature range between 798 K and 876 K for a heating duration of 1.56 ks. Microstructures of the composites thus fabricated were examined by scanning electron microscopy and no reaction was detected at the interface between the SiC particle and the Al matrix. The relative packing density of the Al-matrix composite containing SiC was higher than 99% in a volume fraction range of SiC between 40% and 55%. Thermal conductivity of the composite increased with increasing the SiC content in the composite at a SiC fraction range between 40 vol.% and 50 vol.%. The highest thermal conductivity was obtained for Al-50 vol.% SiC composite and reached 252 W/mK. The coefficient of thermal expansion of the composites falls in the upper line of Kerner's model, indicating strong bonding between the SiC particle and the Al matrix in the composite.

  • 出版日期2012-6