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Fabrication and thermal conductivity of short graphite fiber/Al composites by vacuum pressure infiltration

机译:真空压力渗透法制备短石墨纤维/铝复合材料及其导热性能

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摘要

Short graphite fiber/Al composites were fabricated by a modified two-step vacuum pressure infiltration technique. Copper-coated graphite fibers preform was infiltrated with liquid aluminum at 800℃ under infiltration pressure of 1 MPa and solidification pressure of 30 MPa for 30 min. The effects of surface modification and the processing parameters of vacuum pressure infiltration on relative density and thermal conductivity of the composites were systematically studied. The results show that short graphite fiber/Al composite with relatively high density of 99.1% and thermal conductivity of 208 W?m~(-1)?K~(-1) was successfully fabricated. Through the application of copper coating onto the graphite fibers, the in-plane thermal conductivity of the composite was effectively enhanced from 117 W?m~(-1)?K~(-1) to 208 W?m~(-1)?K~(-1) as a result of improved interfacial bonding. The obtained short graphite fiber/Al composites are promising materials for electronic packing applications.
机译:短石墨纤维/铝复合材料是通过改进的两步真空压力渗透技术制备的。在1 MPa的渗透压力和30 MPa的固化压力下,在800℃下用液态铝渗透覆铜石墨纤维预制件。系统研究了表面改性和真空压力渗入工艺参数对复合材料相对密度和导热系数的影响。结果表明,成功地制备了密度为99.1%,导热系数为208 W?m〜(-1)?K〜(-1)的短石墨纤维/ Al复合材料。通过在石墨纤维上涂铜,有效提高了复合材料的面内导热系数,从117 W?m〜(-1)?K〜(-1)提高到208 W?m〜(-1)。由于改善了界面键合,ΔK〜(-1)。所得的短石墨纤维/铝复合材料是用于电子包装应用的有前途的材料。

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